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NSR database version of April 25, 2024.

Search: Author = A.Di Pietro

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2023GU07      Eur.Phys.J. A 59, 65 (2023)

G.L.Guardo, T.Petruse, D.Lattuada, M.La Cognata, D.L.Balabanski, E.Aciksoz, L.Acosta, L.Capponi, D.Carbone, S.Cherubini, D.Choudhury, G.D'Agata, A.Di Pietro, P.Figuera, M.Gulino, A.I.Kilik, M.La Commara, L.Lamia, C.Matei, S.Palmerini, R.G.Pizzone, G.G.Rapisarda, S.Romano, M.L.Sergi, P.-A.Soderstrom, R.Sparta, A.Tumino, S.Vinals

Direct measurement of the 19F(p, α0)16O reaction at Ecm= 0.4-0.9 using the LHASA detector array

NUCLEAR REACTIONS 1H(19F, α), E(cm)=0.4-0.9 MeV; measured reaction products, Eα, Iα; deduced σ(θ), S-factor. Comparison with NACRE compilation, available data. INFN-Laboratori Nazionali del Sud, Catania (Italy).

doi: 10.1140/epja/s10050-023-00957-1
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Data from this article have been entered in the XUNDL database. For more information, click here.


2023JE05      Eur.Phys.J. A 59, 228 (2023)

D.Jelavic Malenica, M.Milin, D.Dell'Aquila, A.Di Pietro, P.Figuera, I.Gasparic, T.Mijatovic, A.Musumarra, M.G.Pellegriti, V.Scuderi, N.Soic, S.Szilner, D.Torresi, M.Uroic

The 13C states populated in 10B + 10B reactions at 72 MeV

NUCLEAR REACTIONS 10B(10B, 7Be)13C, E=72 MeV; measured reaction products; deduced inclusive excitation energy spectra, J, π, rotational band, high-spin states, cluster structure. Comparison with available data. INFN-LNS Catania, the SMP Tandem accelerator.

doi: 10.1140/epja/s10050-023-01148-8
Citations: PlumX Metrics


2023OV01      Phys.Lett. B 843, 138007 (2023)

J.D.Ovejas, I.Martel, D.Dell'Aquila, L.Acosta, J.L.Aguado, G.de Angelis, M.J.G.Borge, J.A.Briz, A.Chbihi, G.Colucci, C.Diaz-Martin, P.Figuera, D.Galaviz, C.Garcia-Ramos, J.A.Gomez-Galan, C.A.Gonzales, N.Goyal, N.Keeley, K.W.Kemper, T.Kurtukian Nieto, D.J.Malenica, M.Mazzocco, D.Nurkic, A.K.Orduz, A.Ortiz, L.Palada, C.Parascandolo, A.Di Pietro, A.M.Rodriguez, K.Rusek, F.Salguero, A.M.Sanchez-Benitez, M.Sanchez-Raya, J.Sanchez-Segovia, N.Soic, F.Soramel, M.Stanoiu, O.Tengblad, N.Vukman, M.Xarepe

Suppression of Coulomb-nuclear interference in the near-barrier elastic scattering of 17Ne from 208Pb

NUCLEAR REACTIONS 208Pb(17Ne, 17Ne), (17Ne, X)15O, E=136 MeV; measured reaction products. 17Ne; deduced σ, σ(θ) for elastic scattering and 15O inclusive production, optical model parameters, B(E2). Coupled channels analysis. Comparison with available data. The GLORIA detector array, the SPIRAL1 facility, GANIL.

doi: 10.1016/j.physletb.2023.138007
Citations: PlumX Metrics


2022DI05      Phys.Lett. B 832, 137256 (2022)

A.Di Pietro, A.C.Shotter, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, A.M.Moro, M.Alcorta, M.J.G.Borge, T.Davinson, F.Ferrera, A.M.Laird, M.Lattuada, N.Soic, O.Tengblad, D.Torresi, M.Zadro

Hints of quasi-molecular states in 13B via the study of 9Li-4He elastic scattering

NUCLEAR REACTIONS 4He(9Li, 9Li), (9Li, X), E(cm)=5-9.5 MeV; measured reaction products, TOF. 13B; deduced energy spectrum, broad resonances, σ(θ). R-matrix analysis. The Thick Target Inverse Kinematics technique, the TRIUMF laboratory (Canada) using a 32 MeV 9Li beam delivered by ISAC-II.

doi: 10.1016/j.physletb.2022.137256
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2809. Data from this article have been entered in the XUNDL database. For more information, click here.


2022LA01      Phys.Lett. B 826, 136917 (2022)

M.La Cognata, S.Palmerini, P.Adsley, F.Hammache, A.Di Pietro, P.Figuera, R.Alba, S.Cherubini, F.Dell'Agli, G.L.Guardo, M.Gulino, L.Lamia, D.Lattuada, C.Maiolino, A.Oliva, R.G.Pizzone, P.M.Prajapati, S.Ramano, D.Santonocito, R.Sparta, M.L.Sergi, A.Tumino

Exploring the astrophysical energy range of the 27Al(p, α)24Mg reaction: A new recommended reaction rate

NUCLEAR REACTIONS 2H(27Al, α24Mg)1NN, E<1.5 MeV; measured reaction products. 28Si, 24Mg; deduced σ(θ, E), strengths of the levels, astrophysical reaction rates. The indirect Trojan Horse method (THM), INFN-LNS Tandem accelerator (Catania, Italy).

doi: 10.1016/j.physletb.2022.136917
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Data from this article have been entered in the XUNDL database. For more information, click here.


2022LA14      Astrophys.J. 941, 96 (2022)

M.La Cognata, S.Palmerini, P.Adsley, F.Hammache, A.Di Pietro, P.Figuera, F.Dell'Agli, R.Alba, S.Cherubini, G.L.Guardo, M.Gulino, L.Lamia, D.Lattuada, C.Maiolino, A.Oliva, R.G.Pizzone, P.M.Prajapati, G.G.Rapisarda, S.Romano, D.Santonocito, R.Sparta, M.L.Sergi, A.Tumino, P.Ventura

A New Reaction Rate of the 27Al(p/α)24Mg Reaction Based on Indirect Measurements at Astrophysical Energies and Implications for 27Al Yields of Intermediate-mass Stars

NUCLEAR REACTIONS 2H(27Al, α24Mg), E=80 MeV; measured reaction products. 28Si, 24Mg; deduced σ(θ), σ(θ, E), resonance strengths. Comparison with Monte Carlo code RatesMC. Indirect Trojan Horse Method (THM), the INFN-LNS Tandem (Catania, Italy).

doi: 10.3847/1538-4357/ac9c5e
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.


2021KU26      Phys.Rev. C 104, 044601 (2021)

K.Kuhn, F.Sarazin, F.M.Nunes, M.A.G.Alvarez, C.Andreoiu, D.W.Bardayan, P.C.Bender, J.C.Blackmon, M.J.G.Borge, R.Braid, B.A.Brown, W.N.Catford, C.Aa.Diget, A.DiPietro, T.E.Drake, P.Figuera, A.B.Garnsworthy, J.Gomez-Camacho, G.Hackman, U.Hager, S.V.Ilyushkin, E.Nacher, P.D.O'Malley, A.Perea, V.Pesudo, S.T.Pittman, D.Smalley, C.E.Svensson, O.Tengblad, P.Thompson, C.Unsworth, Z.M.Wang

Experimental study of the nature of the 1- and 2- excited states in 10Be using the 11Be(p, d) reaction in inverse kinematics

NUCLEAR REACTIONS 1H(11Be, d)10Be, (11Be, p), (11Be, p'), E=9.93 MeV/nucleon, [secondary 11Be beam from Ta(p, X), E=479 MeV primary reaction at TRIUMF cyclotron, followed by extraction of 11Be using Resonant Ionization Laser Ion Source (TRILIS) and accelerated through the ISAC-I and ISAC-II accelerators]; measured E(d), I(d), E(p), I(p), elastic and inelastic σ(θ) of outgoing protons, σ(θ) for deuterons using silicon telescopes, Eγ, Iγ, dγ-coin using TIGRESS array of 12 HPGe detectors for γ detection. 10Be; deduced levels, spectroscopic factors for 5960, 1- and 6263, 2- levels, mixed configurations with halo and cluster structures. Comparison of spectroscopic factors with predictions of shell model. Reaction kinematics and angular distributions analyzed using two versions of transfer reaction model considering one-step and two-step processes. Comparison with previous experimental results from RCNP and ISOLDE-CERN.

doi: 10.1103/PhysRevC.104.044601
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2682.


2021SP03      Eur.Phys.J. A 57, 170 (2021)

R.Sparta, L.Lamia, M.La Cognata, C.Spitaleri, G.G.Rapisarda, G.L.Guardo, S.Cherubini, G.D'Agata, A.Di Pietro, P.Figuera, M.Gulino, D.Lattuada, M.Lattuada, S.Palmerini, R.G.Pizzone, S.Romano, M.L.Sergi, A.Tumino, S.Typel

10B(n, α0)7Li and 10B(n, α1)7Li reactions measured via Trojan Horse Method

NUCLEAR REACTIONS 2H(10B, α7Be), E=28 MeV; measured reaction products, Eα, Iα; deduced momentum distribution for the spectator particle, σ(θ), σ(E), 10B(n, α) σ using the Trojan Horse Method.

doi: 10.1140/epja/s10050-021-00481-0
Citations: PlumX Metrics


2021SP06      Phys.Lett. B 820, 136477 (2021)

R.Sparta, A.Di Pietro, P.Figuera, O.Tengblad, A.M.Moro, I.Martel, J.P.Fernandez-Garcia, J.Lei, L.Acosta, M.J.G.Borge, G.Bruni, J.Cederkall, T.Davinson, J.D.Ovejas, L.M.Fraile, D.Galaviz, J.H.Jensen, B.Jonson, M.La Cognata, A.Perea, A.M.Sanchez-Benitez, N.Soic, S.Vinals

Probing proton halo effects in the 8B+64Zn collision around the Coulomb barrier

NUCLEAR REACTIONS 64Zn(8B, 8B), (8B, X)7Be, E=4.9 MeV/nucleon; measured reaction products. 8B; deduced σ(θ, E). Comparison with continuum-discretized coupled-channels (CDCC) calculations.

doi: 10.1016/j.physletb.2021.136477
Citations: PlumX Metrics


2020DU18      Phys.Lett. B 811, 135942 (2020)

F.F.Duan, Y.Y.Yang, K.Wang, A.M.Moro, V.Guimaraes, D.Y.Pang, J.S.Wang, Z.Y.Sun, J.Lei, A.Di Pietro, X.Liu, G.Yang, J.B.Ma, P.Ma, S.W.Xu, Z.Bai, X.X.Sun, Q.Hu, J.L.Lou, X.X.Xu, H.X.Li, S.Y.Jin, H.J.Ong, Q.Liu, J.S.Yao, H.K.Qi, C.J.Lin, H.M.Jia, N.R.Ma, L.J.Sun, D.X.Wang, Y.H.Zhang, X.H.Zhou, Z.G.Hu, H.S.Xu

Scattering of the halo nucleus 11Be from a lead target at 3.5 times the Coulomb barrier energy

NUCLEAR REACTIONS 208Pb(11Be, 11Be), (11Be, X), E=140 MeV; 208Pb(10Be, X), (10Be, X), E=127 MeV; 208Pb(9Be, 9Be), (9Be, X), E=88 MeV; measured reaction products. 9,10,11Be; deduced σ(θ), σ(E), σ. Comparison with continuum discretized coupled channel (CDCC) as well as by the XCDCC calculations.

doi: 10.1016/j.physletb.2020.135942
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetS0235.


2020NA31      Phys.Atomic Nuclei 83, 520 (2020)

D.K.Nauruzbayev, A.K.Nurmukhanbetova, V.Z.Goldberg, M.La Cognata, A.Di Pietro, P.Figuera, S.Cherubini, M.Gulino, L.Lamia, R.G.Pizzone, R.Sparta, A.Tumino, A.Serikov, E.M.Gazeeva

Strong Resonances at High Excitation Energy in 17O + Alpha Resonance Scattering

NUCLEAR REACTIONS 4He(17O, α), E=54.4 MeV; measured reaction products. 21Ne; deduced σ(E), very strong resonances at high energies of 8.6 MeV.

doi: 10.1134/S1063778820040158
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD8026.


2020OV01      Acta Phys.Pol. B51, 731 (2020)

J.D.Ovejas, A.Knyazev, I.Martel, O.Tengblad, M.J.G.Borge, J.Cederkall, N.Keeley, K.Rusek, C.Garcia-Ramos, L.A.Acosta, A.A.Arokiaraj, M.Babo, T.Cap, N.Ceylan, G.De Angelis, A.Di Pietro, J.P.Fernandez, P.Figuera, L.Fraile, H.Fynbo, D.Galviz, J.H.Jensen, B.Jonson, R.Kotak, T.Kurtukian, M.Madurga, G.Marquinez-Duran, M.Munch, A.K.Orduz, R.Honorio, A.Pakou, T.Perez, L.Peralta, A.Perea, R.Raabe, M.Renaud, K.Riisager, A.M.Sanchez-Benitez, J.Sanchez-Segovia, O.Sgouros, V.Soukeras, P.Teubig, S.Vinals, M.Wolinska-Cichocka, R.Wolski, J.Yang

Halo Effects in the Low-Energy Scattering of 15C with Heavy Targets

doi: 10.5506/APhysPolB.51.731
Citations: PlumX Metrics


2019DI11      Phys.Lett. B 798, 134954 (2019)

A.Di Pietro, A.M.Moro, J.Lei, R.de Diego

Insights into the dynamics of breakup of the halo nucleus 11Be on a 64Zn target

NUCLEAR REACTIONS 64Zn(11Be, X)10Be, E=28.7 MeV; analyzed available data; deduced quasielastic and breakup σ(θ), σ(θ, E) using CDCC and extended CDCC (XCDCC) calculations.

doi: 10.1016/j.physletb.2019.134954
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1856.


2019FE05      Phys.Rev. C 99, 054605 (2019)

J.P.Fernandez-Garcia, A.Di Pietro, P.Figuera, J.Gomez-Camacho, M.Lattuada, J.Lei, A.M.Moro, M.Rodriguez-Gallardo, V.Scuderi

Breakup mechanisms in the 6He + 64Zn reaction at near-barrier energies

NUCLEAR REACTIONS 64Zn(α, α), E=17.4 MeV; measured scattered α particles, differential σ(θ) using LEDA-type detectors and single-sided silicon strip detectors for particle detection at the Louvain la Neuve (Belgium) cyclotron facility; analyzed present data and previous experimental data at E(α)=13.2 MeV by optical model calculations based on the Sao Paulo potential. 64Zn(6He, 6He), (6He, α), E=14.85, 17.9 MeV; measured scattered particles, differential σ(θ) for outgoing 6He and α particles, the latter from 2n transfer process; analyzed present data and previous experimental data at E(6He)=9.8 and 13.5 MeV by optical model calculations, coupled-reaction-channel (CRC), continuum-discretized coupled channel (CDCC), and DWBA inclusive-breakup models.

doi: 10.1103/PhysRevC.99.054605
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2458.


2019JE01      Phys.Rev. C 99, 064318 (2019)

D.Jelavic Malenica, M.Milin, S.Blagus, A.Di Pietro, P.Figuera, M.Lattuada, DJ.Miljanic, A.Musumarra, M.G.Pellegriti, L.Prepolec, V.Scuderi, N.Skukan, N.Soic, S.Szilner, D.Torresi, M.Uroic

12C states populated in 10B + 10B reactions

NUCLEAR REACTIONS 10B(10B, X), (10B, 2α), (10B, 3α), (10B, 8Be), (10B, d10B), E=50.0, 72.2 MeV; measured Ep, Ip, Eα, Iα, αα-coin, ΔE-E spectrum, energy-momentum plot for αα-coin and excitation energy spectrum using ΔE-E detector array at INFN-LNS, Catania. 12C; deduced levels, J, π, α-cluster and 2α+2d molecular structures.

doi: 10.1103/PhysRevC.99.064318
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.


2019LA08      Phys.Rev. C 99, 034301 (2019)

M.La Cognata, M.Fisichella, A.Di Pietro, P.Figuera, V.Z.Goldberg, S.Cherubini, J.P.Fernandez-Garcia, M.Gulino, L.Lamia, D.Lattuada, M.Lattuada, R.G.Pizzone, G.G.Rapisarda, S.Romano, R.Sparta, C.Spitaleri, D.Torresi, A.Tumino, M.Zadro

Observation of 15N α resonant structures in 19F using the thick target in inverse kinematics scattering method

NUCLEAR REACTIONS 4He(15N, α), E=40.23 MeV; measured Eα, Iα, differential σ(θ) using ΔE-E silicon telescopes for α detection and surface barrier detectors for 15N-like recoils at the LNL-Catania Tandem accelerator facility. 19F; deduced levels, resonances, J, π, α-widths, proton widths and potential α-cluster states using R-matrix analysis using AZURE2 code. Comparison with previous experimental data, and with literature data for mirror nucleus 19Ne. Relevance to models of stars in different evolutionary stages, such as the asymptotic giant branch (AGB) stars asymptotic giant branch (AGB).

doi: 10.1103/PhysRevC.99.034301
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2432. Data from this article have been entered in the XUNDL database. For more information, click here.


2017DI04      J.Phys.(London) G44, 044013 (2017)

A.Di Pietro, K.Riisager, P.Van Duppen

Physics with post-accelerated beams at ISOLDE: nuclear reactions

doi: 10.1088/1361-6471/aa6088
Citations: PlumX Metrics


2017DI05      Acta Phys.Pol. B48, 455 (2017)

A.Di Pietro, J.P.Fernandez-Garcia, M.Fisichella, M.Alcorta, M.J.G.Borge, T.Davinson, F.Ferrera, P.Figuera, A.M.Laird, M.Lattuada, A.C.Shotter, N.Soic, O.Tengblad, D.Torresi, M.Zadro

Investigation of Cluster States in 13B Using the 9Li-α Resonant Elastic Scattering

NUCLEAR REACTIONS 4He(9Li, α), E=32 MeV; measured Eα, Iα using three telescopes, β-decay from radioactive 9Li beam. 13B; deduced excitation energy spectrum, σ(θ) vs E* with structures, large asymmetry of 19.5 MeV peak indicates it may come from superposition of more states. Preliminary.

doi: 10.5506/APhysPolB.48.455
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.


2017FI04      Phys.Rev. C 95, 034617 (2017)

M.Fisichella, A.C.Shotter, P.Figuera, J.Lubian, A.Di Pietro, J.P.Fernandez-Garcia, J.L.Ferreira, M.Lattuada, P.Lotti, A.Musumarra, M.G.Pellegriti, C.Ruiz, V.Scuderi, E.Strano, D.Torresi, M.Zadro

Breakup and n-transfer effects on the fusion reactions 6, 7Li + 120, 119Sn around the Coulomb barrier

NUCLEAR REACTIONS 120Sn(6Li, X), 119Sn(7Li, X), E(cm)=17.5-28 MeV; measured reaction products, x-rays from the ϵ decay of evaporation residues 123I, and 124I, complete fusion s(E), production σ(E) for 120Sb using activation technique at LNS-Catania facility; deduced fusion excitation functions using a deconvolution procedure. Deconvolution results compared with other extraction methods. Comparison with theoretical prediction of coupled channels (CC) and coupled reaction channels (CRC) calculations.

doi: 10.1103/PhysRevC.95.034617
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2404.


2017PE06      Phys.Rev.Lett. 118, 152502 (2017)

V.Pesudo, M.J.G.Borge, A.M.Moro, J.A.Lay, E.Nacher, J.Gomez-Camacho, O.Tengblad, L.Acosta, M.Alcorta, M.A.G.Alvarez, C.Andreoiu, P.C.Bender, R.Braid, M.Cubero, A.Di Pietro, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, B.R.Fulton, A.B.Garnsworthy, G.Hackman, U.Hager, O.S.Kirsebom, K.Kuhn, M.Lattuada, G.Marquinez-Duran, I.Martel, D.Miller, M.Moukaddam, P.D.O'Malley, A.Perea, M.M.Rajabali, A.M.Sanchez-Benitez, F.Sarazin, V.Scuderi, C.E.Svensson, C.Unsworth, Z.M.Wang

Scattering of the Halo Nucleus 11Be on 197Au at Energies around the Coulomb Barrier

NUCLEAR REACTIONS 197Au(11Be, X), E=31.9 MeV; measured reaction products; deduced σ, σ(θ), B(E1). Comparison with theoretical calculations.

doi: 10.1103/PhysRevLett.118.152502
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2259.


2017SO09      Phys.Rev. C 95, 054614 (2017)

V.Soukeras, A.Pakou, F.Cappuzzello, L.Acosta, C.Agodi, N.Alamanos, S.Calabrese, D.Carbone, M.Cavallaro, A.Cunsolo, A.Di Pietro, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, A.Foti, N.Keeley, G.Marquinez-Duran, I.Martel, M.Mazzocco, D.Pierroutsakou, K.Rusek, G.Santagati, O.Sgouros, E.Stiliaris, E.Strano, D.Torresi, K.Zerva

Breakup of 6Li +p at near-barrier energies and the effect on elastic scattering

NUCLEAR REACTIONS 1H(6Li, α), E=25, 29 MeV; 1H(6Li, 6Li), E=16, 20, 25, 29 MeV; measured E(d), E(α), two-dimensional plot for (deuterons)(α)-coin, exclusive breakup spectrum, breakup and elastic angular distributions σ(θ) using large acceptance MAGNEX spectrometer at LNS-Catania. Comparison of experimental cross sections with continuum discretized coupled channel (CDCC) calculations. Cluster structure of 6Li. Breakup Monte Carlo simulations for energy spectra of fragments.

doi: 10.1103/PhysRevC.95.054614
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2411.


2017TO06      Acta Phys.Pol. B48, 319 (2017)

V.Tokic, N.Soic, S.Blagus, S.Fazinic, D.Jelavic-Malenica, T.Mijatovic, D.Miljanic, L.Prepolec, N.Skukan, S.Szilner, M.Uroic, M.Milin, A.Di Pietro, P.Figuera, J.P.Fernandez-Garcia, M.Fisichella, M.Lattuada, V.Scuderi, E.Strano, D.Torresi, S.Bailey, N.Curtis, M.Freer, R.Smith, J.Walshe, V.Ziman, L.Acosta, I.Martel, G.Marquinez-Duran, A.M.Sanchez-Benitez, E.Fioretto

Structure of 24Mg Excited States and Their Influence on Nucleosynthesis

NUCLEAR REACTIONS 12C(16O, α)24Mg, E=94 MeV; measured decay channels of 24Mg (emission of α, proton, breakup to 12C+12C and to 8Be+16O). 24Mg; deduced excitation energies of resonances. 4He(20Ne, α)20Ne, E=44, 52, 60 MeV; measured reaction products. 24Mg; deduced σ(θ), resonances; calculated σ(θ) using R-matrix fit to the data at 44 MeV. Further R-matrix calculations in progress.

doi: 10.5506/APhysPolB.48.319
Citations: PlumX Metrics


2017TO14      Phys.Rev. C 96, 044317 (2017)

D.Torresi, C.Wheldon, Tz.Kokalova, S.Bailey, A.Boiano, C.Boiano, M.Fisichella, M.Mazzocco, C.Parascandolo, D.Pierroutsakou, E.Strano, M.Zadro, M.Cavallaro, S.Cherubini, N.Curtis, A.Di Pietro, J.P.Fernandez-Garcia, P.Figuera, T.Glodariu, J.Grebosz, M.La Cognata, M.La Commara, M.Lattuada, D.Mengoni, R.G.Pizzone, C.Signorini, C.Stefanini, L.Stroe, C.Spitaleri

Evidence for 15O + α resonance structures in 19Ne via direct measurement

NUCLEAR REACTIONS 4He(15O, α), E=28.5 MeV, [secondary 15O beam from 1H(15N, 15O), E=80 MeV primary reaction at LNL-XTU, Legnaro tandem Van de Graaff accelerator; measured Eα, Iα using a double-sided silicon strip detector (DSSSD), absolute differential cross sections. 19Ne; deduced levels, resonances, J, π, Γα, total Γ, partial decay branches, reduced α-widths, 15O+α rotational band, cluster structure using R-matrix analysis with AZURE2 code. Comparison with previous experimental results, and with potential model calculation using the well-known 16O+α cluster band configurations. Relevance to α branching ratio in the astrophysical reaction rate for high-spin near-threshold resonances.

doi: 10.1103/PhysRevC.96.044317
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2437. Data from this article have been entered in the XUNDL database. For more information, click here.


2016TO16      Nucl.Instrum.Methods Phys.Res. B389-390, 1 (2016)

D.Torresi, D.Carbone, M.Cavallaro, A.Di Pietro, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, M.Lattuada, M.Zadro

Measurement of the stopping power for 16O in 4He gas

NUCLEAR REACTIONS 4He(16O, X), E=1-31 MeV; measured reaction products; deduced stopping power. Comparison with SRIM-2008, MSTAR calculations, experimental data.

doi: 10.1016/j.nimb.2016.10.031
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2015BE22      Eur.Phys.J. A 51, 86 (2015)

Ch.Betsou, A.Pakou, F.Cappuzzello, L.Acosta, C.Agodi, X.Aslanoglou, D.Carbone, M.Cavallaro, A.Di Pietro, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, A.Foti, N.Keeley, G.Marquinez-Duran, I.Martel, M.Mazzocco, N.G.Nicolis, D.Pierroutsakou, K.Rusek, O.Sgouros, V.Soukeras, E.Stiliaris, E.Strano, D.Torresi

Study of the 6Li + p → 3He + 4He reaction in inverse kinematics

NUCLEAR REACTIONS 1H(6Li, 3He), E=2.7, 3.3, 4.2, 4.8 MeV/nucleon;measured 3He, E(3He), I(3He, θ), Eα, Iα(θ), (3He)α-coin; deduced σ(θ); calculated σ(θ), reaction σ, partial σ from different processes using CDCC and using compound nucleus code MECO. Compared with earlier data.

doi: 10.1140/epja/i2015-15086-y
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2281.


2015FE10      Phys.Rev. C 92, 054602 (2015)

J.P.Fernandez-Garcia, M.Zadro, A.Di Pietro, P.Figuera, M.Fisichella, O.Goryunov, M.Lattuada, C.Marchetta, A.M.Moro, A.Musumarra, V.Ostashko, M.G.Pellegriti, V.Scuderi, E.Strano, D.Torresi

Effects of coupling to breakup in the 6, 7Li + 64Zn systems at near-barrier energies

NUCLEAR REACTIONS 64Zn(7Li, 7Li), E=13.03, 13.85, 15.08, 16.60, 18.33, 20.18 MeV; measured charged-particle E-ΔE spectra, σ(θ, E) at INFN-LNS, Catania. Enriched target. 64Zn(6Li, 6Li), E(cm)=10.77, 11.69, 12.43, 13.54, 14.92, 16.30, 18.14, 19.98 MeV; analyzed experimental σ(θ, E) distributions. Continuum-discretized coupled-channels (CDCC) method analysis. Discussed effects of couplings to the breakup channels, and inclusion of resonant states in 6,7Li.

doi: 10.1103/PhysRevC.92.054602
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2331.


2015FI08      Phys.Rev. C 92, 064611 (2015)

M.Fisichella, A.C.Shotter, A.Di Pietro, P.Figuera, M.Lattuada, C.Marchetta, V.Privitera, L.Romano, C.Ruiz, M.Zadro

Sub-barrier radioactive ion beam investigations using a new methodology and analysis for the stacked target technique

NUCLEAR REACTIONS 120Sn(6Li, X), E=17-25 MeV; analyzed beam energy distribution in a thick and stacked target using substrates of 93Nb and 165Ho, thickness probability distribution, fusion σ(E). 120Sn(9Li, X), E=16.5-20 MeV; analyzed fusion σ(E), energy distribution inside a thin target. Re-evaluation of some previously published sub-barrier fusion data to demonstrate the possibility of misinterpretations of derived excitation functions. Discussed analysis problems in associating measured average cross-sections with the correct beam energy.

doi: 10.1103/PhysRevC.92.064611
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2289.


2015SO12      Phys.Rev. C 91, 057601 (2015)

V.Soukeras, A.Pakou, F.Cappuzzello, L.Acosta, C.Agodi, N.Alamanos, M.Bondi, D.Carbone, M.Cavallaro, A.Cunsolo, M.De Napoli, A.Di Pietro, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, A.Foti, N.Keeley, G.Marquinez-Duran, I.Martel, M.Mazzocco, D.Nicolosi, D.Pierroutsakou, K.Rusek, O.Sgouros, E.Stiliaris, E.Strano, D.Torresi

Reexamination of 6Li+p elastic scattering in inverse kinematics

NUCLEAR REACTIONS 1H(6Li, 6Li), E=16, 20, 25, 29 MeV; measured scattered 6Li spectra, σ(θ, E) using MAGNEX spectrometer at INFN-LNS-Catania accelerator facility. Comparison with previous experimental data, and with predictions of Jeukenne-Lejeune-Mahaux (JLM) and continuum discretized coupled-channel (CDCC) calculations.

doi: 10.1103/PhysRevC.91.057601
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2277.


2015UR03      Eur.Phys.J. A 51, 93 (2015)

M.Uroic, M.Milin, A.Di Pietro, P.Figuera, M.Fisichella, M.Lattuada, I.Martel, D.Miljanic, M.G.Pellegriti, L.Prepolec, A.M.Sanchez-Benitez, V.Scuderi, N.Soic, E.Strano, D.Torresi

Improvements in data analysis obtained by large-area silicon ΔE - E detector telescopes

doi: 10.1140/epja/i2015-15093-0
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2014PE05      Acta Phys.Pol. B45, 375 (2014)

V.Pesudo, M.J.G.Borge, A.M.Moro, E.Nacher, L.Acosta, M.Alcorta, M.A.G.Alvarez, G.C.Ball, P.C.Bender, R.Braid, M.Cubero, A.di Pietro, J.P.Fernandez-Garcia, P.Figuera, M.Fisichella, B.R.Fulton, A.B.Garnsworthy, J.Gomez-Camacho, G.Hackman, O.S.Kirsebom, K.Kuhn, R.Kruecken, M.Lattuada, J.A.Lay, G.Marquinez-Duran, I.Martel, D.Miller, M.Moukaddam, P.D.O'Malley, A.Perea, M.M.Rajabali, A.M.Sanchez-Benitez, F.Sarazin, V.Scuderi, C.E.Svensson, O.Tengblad, C.Unsworth, Z.M.Wang

Reaction of the Halo Nucleus 11Be on Heavy Targets at Energies Around the Coulomb Barrier

NUCLEAR REACTIONS 197Au(11Be, X), E=31.9 MeV; measured reaction products; deduced σ. Comparison with CDCC calculations.

doi: 10.5506/APhysPolB.45.375
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2013DI09      Phys.Rev. C 87, 064614 (2013)

A.Di Pietro, P.Figuera, E.Strano, M.Fisichella, O.Goryunov, M.Lattuada, C.Maiolino, C.Marchetta, M.Milin, A.Musumarra, V.Ostashko, M.G.Pellegriti, V.Privitera, G.Randisi, L.Romano, D.Santonocito, V.Scuderi, D.Torresi, M.Zadro

Heavy residue excitation functions for the collisions 6, 7Li+64Zn near the Coulomb barrier

NUCLEAR REACTIONS 64Zn(6Li, X), (7Li, X), E=10-30 MeV; measured x-ray spectra, activity decay curves, σ(E) for heavy residues of 64,65Zn, 64,65,66,67,68,69Ga, 66,67,68,69,70Ge, 69As using activation technique; deduced competition between complete fusion (CF), incomplete fusion (ICF) and direct cluster transfer (DCT) reaction mechanisms. Comparison with statistical model calculations for CF and ICF mechanisms using CASCADE computer code, and with finite-range DWBA calculations for DCT mechanism using FRESCO computer code.

doi: 10.1103/PhysRevC.87.064614
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2185.


2013OS03      Nucl.Instrum.Methods Phys.Res. A723, 8 (2013)

M.Osipenko, M.Ripani, R.Alba, G.Ricco, M.Schillaci, M.Barbagallo, P.Boccaccio, A.Celentano, N.Colonna, L.Cosentino, A.Del Zoppo, A.DiPietro, J.Esposito, P.Figuera, P.Finocchiaro, A.Kostyukov, C.Maiolino, D.Santonocito, V.Scuderi, C.M.Viberti

Measurement of neutron yield by 62 MeV proton beam on a thick beryllium target

NUCLEAR REACTIONS Be(p, n), E=62 MeV; measured reaction products, En, In; deduced thick target neutron yields. Comparison with MCNP, FLUKA and Geant4 Monte Carlo simulations.

doi: 10.1016/j.nima.2013.04.074
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2088.


2013SC05      Acta Phys.Pol. B44, 463 (2013)

V.Scuderi, A.Di Pietro, A.M.Moro, L.Acosta, F.Amorini, M.J.G.Borge, P.Figuera, M.Fisichella, L.M.Fraile, J.Gomez-Camacho, H.Jeppesen, M.Lattuada, I.Martel, M.Milin, A.Musumarra, M.Papa, M.G.Pellegriti, F.Perez-Bernal, R.Raabe, G.Randisi, F.Rizzo, G.Scalia, O.Tengblad, D.Torresi, A.M.Vidal, D.Voulot, F.Wenander, M.Zadro

Elastic Scattering for the 11Be + 64Zn System Close to the Coulomb Barrier

NUCLEAR REACTIONS 64Zn(10Be, 10Be), (11Be, 11Be), E not given; measured reaction products; deduced σ, σ(θ). Comparison with optical model calculations.

doi: 10.5506/APhysPolB.44.463
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1856.


2013ZA07      Phys.Rev. C 87, 054606 (2013)

M.Zadro, P.Figuera, A.Di Pietro, M.Fisichella, M.Lattuada, T.Lonnroth, M.Milin, V.Ostashko, M.G.Pellegriti, V.Scuderi, D.Stanko, E.Strano, D.Torresi

Quasielastic backscattering and barrier distributions for the 6, 7Li + 64Zn systems

NUCLEAR REACTIONS 64Zn(6Li, 6Li), (6Li, 6Li'), (7Li, 7Li), (7Li, 7Li'), (7Li, 6Li)E=9-20 MeV; measured particle spectra, backward-angle σ(E) at INFN facility; deduced barrier distributions. Comparison with coupled-channel calculations using a double-folding potential as bare potential. Discussed effects of direct breakup and transfer channels.

doi: 10.1103/PhysRevC.87.054606
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2012DI08      Phys.Rev. C 85, 054607 (2012)

A.Di Pietro, V.Scuderi, A.M.Moro, L.Acosta, F.Amorini, M.J.G.Borge, P.Figuera, M.Fisichella, L.M.Fraile, J.Gomez-Camacho, H.Jeppesen, M.Lattuada, I.Martel, M.Milin, A.Musumarra, M.Papa, M.G.Pellegriti, F.Perez-Bernal, R.Raabe, G.Randisi, F.Rizzo, G.Scalia, O.Tengblad, D.Torresi, A.M.Vidal, D.Voulot, F.Wenander, M.Zadro

Experimental study of the collision 11Be + 64Zn around the Coulomb barrier

NUCLEAR REACTIONS 64Zn(9Be, 9Be), E=29 MeV; 64Zn(10Be, 10Be), E=28.7 MeV; 64Zn(11Be, 11Be), E=28.4 MeV; 197Au(10Be, 10Be), E(cm)=27.9 MeV; 197Au(12C, 12C), E(cm)=25.7 MeV; measured particle spectra, elastic scattering σ(θ) at REX-ISOLDE-CERN facility and at LNS, Catania; deduced S matrix. Optical model and distorted-wave Born-approximation (DWBA) analysis. 64Zn(11Be, X), E=28.4 MeV; measured differential σ(θ) of transfer/breakup events; calculated σ(θ) by continuum-discretized coupled-channel (CDCC) calculations.

doi: 10.1103/PhysRevC.85.054607
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1856.


2012DI22      J.Phys.:Conf.Ser. 366, 012013 (2012)

A.Di Pietro, D.Torresi, M.Zadro, L.Cosentino, C.Ducoin, P.Figuera, M.Fisichella, M.Lattuada, C.Maiolino, A.Musumarra, M.Papa, M.G.Pellegriti, M.Rovituso, D.Santonocito, G.Scalia, V.Scuderi, E.Strano

The Inverse Kinematics Thick Target scattering method as a tool to study cluster states in exotic nuclei

NUCLEAR REACTIONS 4He(8Li, X)12B, (8Li, 8Li), E=30.6 MeV; measured thick target Eγ, Iγ; deduced σ(θ=00), resonances. Preliminary.

doi: 10.1088/1742-6596/366/1/012013
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2012SC24      J.Phys.:Conf.Ser. 381, 012050 (2012)

V.Scuderi, A.Di Pietro, L.Acosta, F.Amorini, M.J.G.Borge, P.Figuera, M.Fisichella, L.M.Fraile, J.Gomez-Camacho, H.Jeppesen, M.Lattuada, I.Martel, M.Milin, A.Musumarra, M.Papa, M.G.Pellegriti, F.Perez-Bernal, R.Raabe, G.Randisi, F.Rizzo, D.Santonocito, G.Scalia, O.Tengblad, D.Torresi, A.M.Vidal, M.Zadro

Elastic scattering and direct reactions of the 1n halo 11Be nucleus on 64Zn near the barrier

NUCLEAR REACTIONS 64Zn(9Be, X), (9Be, 9Be), (10Be, X), (10Be, 10Be), (11Be, X), (11Be, 11Be), E(cm)≈Coulomb barrier; measured light charged particles; deduced elastic scattering σ(θ); calculated elastic scattering σ(θ) using optical model.

doi: 10.1088/1742-6596/381/1/012050
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2012ZE04      Eur.Phys.J. A 48, 102 (2012)

K.Zerva, A.Pakou, N.Patronis, P.Figuera, A.Musumarra, A.Di Pietro, M.Fisichella, T.Glodariu, M.La Commara, M.Lattuada, M.Mazzocco, M.G.Pellegriti, D.Pierroutsakou, A.M.Sanchez-Benitez, V.Scuderi, E.Strano, K.Rusek

Quasi-elastic backscattering of 6, 7Li on light, medium and heavy targets at near- and sub-barrier energies

NUCLEAR REACTIONS 58Ni, 116,120Sn, 208Pb(6Li, 6Li), (6Li, 6Li'), (7Li, 7Li), (7Li, 7Li'), E=0.6-1.3 Coulomb barrier; measured E(particle), I(particle, θ=backward); deduced backward σ; calculated backward σ using optical model.

doi: 10.1140/epja/i2012-12102-x
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2045.


2011DI19      J.Phys.:Conf.Ser. 312, 082020 (2011)

A.Di Pietro, F.Amorini, P.Figuera, M.Fisichella, M.Lattuada, A.Musumarra, M.Papa, M.G.Pellegriti, G.Randisi, F.Rizzo, D.Santonocito, G.Scalia, V.Scuderi, E.Strano, D.Torresi, L.Acosta, I.Martel, F.Perez-Bernal, M.J.G.Borge, A.M.Vidal, O.Tengblad, L.M.Fraile, H.Jeppesen, D.Voulot, F.Wenander, J.Gomez-Camacho, M.Milin, R.Raabe, M.Zadro

Evidence of strong effects of the 11Be halo structure on reaction processes at energies around the Coulomb barrier

NUCLEAR REACTIONS 64Zn(9Be, 9Be), (10Be, 10Be), (11Be, 11Be'), E(cm)≈1.4 Coulomb barrier; measured E(Be), I(Be, θ); deduced σ(θ); calculated σ(θ) using optical model code PTOLEMY. Compared with data.

doi: 10.1088/1742-6596/312/4/082020
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2011FR12      Phys.Rev. C 84, 034317 (2011)

M.Freer, N.I.Ashwood, N.Curtis, A.Di Pietro, P.Figuera, M.Fisichella, L.Grassi, D.Jelavic Malenica, Tz.Kokalova, M.Koncul, T.Mijatovic, M.Milin, L.Prepolec, V.Scuderi, N.Skukan, N.Soic, S.Szilner, V.Tokic, D.Torresi, C.Wheldon

Analysis of states in 13C populated in 9Be + 4He resonant scattering

NUCLEAR REACTIONS 4He(9Be, α), E=12, 17, 20, 21.4 MeV; measured α spectra, excitation function, σ(E). 13C; deduced levels, J, π, resonances, widths, partial α and neutron widths, R-matrix analysis. Comparison with previous data.

doi: 10.1103/PhysRevC.84.034317
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0669. Data from this article have been entered in the XUNDL database. For more information, click here.


2011LO14      Int.J.Mod.Phys. E20, 1066 (2011)

I.Lombardo, C.Agodi, R.Alba, F.Amorini, A.Anzalone, L.Auditore, I.Berceanu, G.Cardella, S.Cavallaro, M.B.Chatterjee, E.Defilippo, A.Dipietro, P.Figuera, E.Geraci, G.Giuliani, L.Grassi, A.Grzeszczuk, J.Han, E.La Guidara, G.Lanzalone, N.Le Neindre, D.Loria, C.Maiolino, A.Pagano, M.Papa, S.Pirrone, G.Politi, A.Pop, F.Porto, F.Rizzo, P.Russotto, D.Santonocito, A.Trifiro, G.Verde, M.Vigilante

Light clusters emission in nuclear reactions at 25 Mev/nucleon with different N/Z of entrance channels

NUCLEAR REACTIONS 40,48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured reaction products; deduced elemental yield of Li and Be isotopes, charge distributions.

doi: 10.1142/S0218301311019295
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2011LO25      Phys.Atomic Nuclei 74, 1562 (2011)

I.Lombardo, C.Agodi, R.Alba, F.Amorini, A.Anzalone, L.Auditore, I.Berceanu, G.Cardella, S.Cavallaro, M.B.Chatterjee, E.De Filippo, A.Di Pietro, P.Figuera, G.Giuliani, E.Geraci, L.Grassi, A.Grzeszczuk, J.Han, E.La Guidara, G.Lanzalone, N.Le Neindre, D.Loria, C.Maiolino, A.Pagano, M.Papa, S.Pirrone, G.Politi, A.Pop, F.Porto, F.Rizzo, P.Russotto, D.Santonocito, A.Trifiro, M.Trimarchi, G.Verde, M.Vigilante

Isospin aspects in nuclear reactions involving Ca beams at 25 MeV/nucleon

NUCLEAR REACTIONS 48Ca(48Ca, X), 40,48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured reaction products; deduced isospin dependence of dynamical and thermodynamical properties.

doi: 10.1134/S1063778811110135
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2011SC28      Phys.Rev. C 84, 064604 (2011)

V.Scuderi, A.Di Pietro, P.Figuera, M.Fisichella, F.Amorini, C.Angulo, G.Cardella, E.Casarejos, M.Lattuada, M.Milin, A.Musumarra, M.Papa, M.G.Pellegriti, R.Raabe, F.Rizzo, N.Skukan, D.Torresi, M.Zadro

Fusion and direct reactions for the system 6He + 64Zn at and below the Coulomb barrier

NUCLEAR REACTIONS 64Zn(6He, αX), E=13, 15, 18 MeV; measured E(α), I(α), particle spectra α(θ); deduced transfer and/or breakup σ. 64Zn(6He, pX), E=10, 13; measured p(θ), fusion σ, activation method. 64Zn(6He, xnypzα), (α, xnypzα), E(cm)=7-16 MeV; measured evaporation residue σ; deduced fusion excitation functions. 6He; deduced halo feature effects on reaction mechanism. 67,68Ga; measured half-life from decay curves. Comparison with statistical model calculations.

doi: 10.1103/PhysRevC.84.064604
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1970.


2011TO05      Int.J.Mod.Phys. E20, 1026 (2011)

D.Torresi, M.Lattuada, A.Musumarra, M.G.Pellegriti, M.Rovituso, G.Scalia, E.Strano, L.Cosentino, A.Di Pietro, P.Figuera, C.Maiolino, D.Santonocito, C.Ducoin, M.Papa, M.Fisichella, T.Lonnroth, V.Scuderi, M.Zadro

Li-α cluster states in 12B using 8Li + 4He inverse kinematics elastic scattering

NUCLEAR REACTIONS 4He(8Li, X)12B/3H, E=30.6 MeV; measured reaction products; deduced σ. Inverse Kinematics Thick Target (TTIK) scattering method.

doi: 10.1142/S0218301311019192
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1905.


2010AM05      Nucl.Phys. A834, 758c (2010)

F.Amorini, V.Sipala, G.Cardella, L.Auditore, C.Boiano, B.Carbone, A.Castoldi, A.Di Pietro, G.Fallica, P.Figuera, P.Finocchiaro, L.Grassi, E.La Guidara, C.Guazzoni, P.Guazzoni, I.Lombardo, D.Loria, A.Pappalardo, S.Pirrone, N.Randazzo, F.Rizzo, G.V.Russo, P.Russotto, C.Scire, S.Scire, A.Trifiro, M.Trimarchi, G.Valvo, L.Zetta

A new monolithic silicon detector telescope with bidimensional sensitivity for imaging applications

doi: 10.1016/j.nuclphysa.2010.01.138
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2010DI08      Phys.Rev.Lett. 105, 022701 (2010)

A.Di Pietro, G.Randisi, V.Scuderi, L.Acosta, F.Amorini, M.J.G.Borge, P.Figuera, M.Fisichella, L.M.Fraile, J.Gomez-Camacho, H.Jeppesen, M.Lattuada, I.Martel, M.Milin, A.Musumarra, M.Papa, M.G.Pellegriti, F.Perez-Bernal, R.Raabe, F.Rizzo, D.Santonocito, G.Scalia, O.Tengblad, D.Torresi, A.M.Vidal, D.Voulot, F.Wenander, M.Zadro

Elastic Scattering and Reaction Mechanisms of the Halo Nucleus 11Be around the Coulomb Barrier

NUCLEAR REACTIONS 64Zn(9Be, 9Be), (10Be, 10Be), (11Be, 11Be), E(cm)=24.5 MeV; measured reaction products. 9,10,11Be; deduced elastic scattering, transfer or breakup σ(θ), σ, halo features of 11Be. Optical model calculations.

doi: 10.1103/PhysRevLett.105.022701
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1856.


2010DI10      Nucl.Phys. A834, 408c (2010)

A.Di Pietro

Structure effects in collisions induced by weakly bound radioactive and stable nuclei

NUCLEAR REACTIONS 64Zn(9Be, 9Be), (10Be, 10Be), (11Be, 11Be), E(cm)=25.4 MeV; measured reaction products. 9,10,11Be; deduced halo nuclei σ(θ); calculated σ(θ). 64Zn(6Li, 6Li), E(cm)=10-40 MeV; measured reaction products. 6Li; deduced halo nuclei fusion σ; calculated σ. 64Zn(7Li, 7Li), E=cyclotron; 64Zn(9Be, 9Be), E=cyclotron. 7Li, 9Be; deduced reaction mechanism features. Optical model with double folding potential. Discussed threshold anomaly, reaction mechanism.

doi: 10.1016/j.nuclphysa.2010.01.051
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1862.


2010DI16      J.Phys.:Conf.Ser. 205, 012042 (2010)

A.Di Pietro

Structure effects in collisions induced by halo and loosely bound nuclei

doi: 10.1088/1742-6596/205/1/012042
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2010LA07      J.Phys.(London) G37, 105105 (2010)

M.La Cognata, A.Del Zoppo, R.Alba, S.Cherubini, N.Colonna, A.Di Pietro, P.Figuera, M.Gulino, L.Lamia, A.Musumarra, M.G.Pellegriti, R.G.Pizzone, C.Rolfs, S.Romano, C.Spitaleri, A.Tumino

Toward correction-free 8Li(α, n)11B data at the Gamow energy of explosive nucleosynthesis

NUCLEAR REACTIONS 4He(8Li, n)11B, E=2-4 MeV; measured reaction products, time, En, In; deduced σ.

doi: 10.1088/0954-3899/37/10/105105
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1660.


2010LO08      Phys.Rev. C 82, 014608 (2010)

I.Lombardo, C.Agodi, R.Alba, F.Amorini, A.Anzalone, I.Berceanu, G.Cardella, S.Cavallaro, M.B.Chatterjee, E.De Filippo, A.Di Pietro, P.Figuera, E.Geraci, G.Giuliani, L.Grassi, A.Grzeszczuk, J.Han, E.La Guidara, G.Lanzalone, N.Le Neindre, C.Maiolino, A.Pagano, M.Papa, S.Pirrone, G.Politi, A.Pop, F.Porto, F.Rizzo, P.Russotto, D.Santonocito, G.Verde

Isospin transport effects in nuclear reactions at 25 MeV/nucleon

NUCLEAR REACTIONS 40,48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured 6,7Li and 7,9Be fragment spectra, 7Li/6Li and 9Be/7Be yield ratios, inclusive energy spectra, and kinetic-energy spectra; deduced isospin effects.

doi: 10.1103/PhysRevC.82.014608
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2010LO09      Nucl.Phys. A834, 458c (2010)

I.Lombardo, C.Agodi, R.Alba, F.Amorini, A.Anzalone, I.Berceanu, G.Cardella, S.Cavallaro, M.B.Chatterjee, R.Coniglione, E.DeFilippo, A.DiPietro, P.Figuera, E.Geraci, G.Giuliani, L.Grassi, A.Grzeszczuk, E.LaGuidara, G.Lanzalone, N.LeNeindre, C.Maiolino, A.Pagano, M.Papa, S.Pirrone, G.Politi, A.Pop, F.Porto, F.Rizzo, P.Russotto, D.Santonocito, P.Sapienza, G.Verde

Isospin dependence of physical observables in Incomplete Fusion reactions at 25 MeV/nucleon

NUCLEAR REACTIONS 40,48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured mass-velocity correlation; deduced temperature.

doi: 10.1016/j.nuclphysa.2010.01.063
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2010MA45      Nucl.Phys. A834, 488c (2010)

M.Mazzocco, A.Boiano, C.Boiano, A.Di Pietro, F.Farinon, P.Figuera, D.Filipescu, L.Fortunato, T.Glodariu, A.Guglielmetti, G.Inglima, M.La Commara, M.Lattuada, C.Mazzocchi, P.Molini, A.Musumarra, A.Pakou, C.Parascandolo, N.Patronis, D.Pierroutsakou, M.Romoli, M.Sandoli, V.Scuderi, C.Signorini, F.Soramel, L.Stroe, D.Torresi, E.Vardaci, A.Vitturi

Scattering of 17F nuclei from a 58Ni target at energies around the Coulomb barrier

NUCLEAR REACTIONS 58Ni(17F, 17F), (17F, 17F'), (17F, p16O), E=54.1, 58.5 MeV; measured σ(θ) using EXODET array; analyzed "reduced" σ. Calculations using coupled-channels code FRESCO. Comparisons with 58Ni(16O, 16O) and 64Zn(16O, 16O). Secondary radioactive beams.

doi: 10.1016/j.nuclphysa.2010.01.073
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2010MU17      Nucl.Instrum.Methods Phys.Res. A 612, 399 (2010)

A.Musumarra, P.Figuera, F.De Luca, A.Di Pietro, P.Finocchiaro, M.Fisichella, M.Lattuada, A.Pakou, M.G.Pellegriti, G.Randisi, G.Scalia, C.Scire, S.Scire, V.Scuderi, D.Torresi, M.Zadro

Measuring total reaction cross-sections at energies near the coulomb barrier by the active target method

NUCLEAR REACTIONS 28Si(7Li, X), E=12-16 MeV; measured products; deduced σ, σ(E). Data were imported from EXFOR entry O1836.

doi: 10.1016/j.nima.2009.11.039
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1836.


2010SC12      Int.J.Mod.Phys. E19, 1236 (2010)

V.Scuderi, A.Di Pietro, L.Acosta, F.Amorini, M.J.G.Borge, P.Figuera, M.Fisichella, L.M.Fraile, J.Gomez-Camacho, H.Jeppesen, M.Lattuada, I.Martel, M.Milin, A.Musumarra, M.Papa, M.G.Pellegriti, R.Raabe, G.Randisi, F.Rizzo, D.Santonocito, E.M.R.Sanchez, G.Scalia, O.Tengblad, D.Torresi, A.M.Vidal, M.Zadro

Structure effects in collisions induced by halo and weakly bound nuclei around the Coulomb barrier

NUCLEAR REACTIONS 64Zn(9Be, 9Be), (10Be, 10Be), (11Be, 11Be), E=29.4, 29.8 MeV; measured reaction products. 9Be, 10Be, 11Be; deduced elastic scattering σ, σ(θ), halo nuclei.

doi: 10.1142/S0218301310015722
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2009AM02      Phys.Rev.Lett. 102, 112701 (2009)

F.Amorini, G.Cardella, G.Giuliani, M.Papa, C.Agodi, R.Alba, A.Anzalone, I.Berceanu, S.Cavallaro, M.B.Chatterjee, R.Coniglione, E.De Filippo, A.Di Pietro, E.Geraci, L.Grassi, A.Grzeszczuk, P.Figuera, E.La Guidara, G.Lanzalone, N.Le Neindre, I.Lombardo, C.Maiolino, A.Pagano, S.Pirrone, G.Politi, A.Pop, F.Porto, F.Rizzo, P.Russotto, D.Santonocito, P.Sapienza, G.Verde

Isospin Dependence of Incomplete Fusion Reactions at 25 MeV/Nucleon

NUCLEAR REACTIONS 40,48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured fragment mass spectra.

doi: 10.1103/PhysRevLett.102.112701
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2009MI23      Eur.Phys.J. A 41, 335 (2009)

M.Milin, V.V.Ostashko, D.Miljanic, H.G.Bohlen, A.Di Pietro, O.Yu.Goryunov, Tz.Kokalova, M.Lattuada, A.Musumarra, W.von Oertzen, M.G.Pellegriti, S.Romano, S.Thummerer, A.Tumino, M.Zadro

States in 17O excited in the 13C + 9Be → 13C + 2α + n reaction at 90 MeV

NUCLEAR REACTIONS 9Be(13C, α), E=90 MeV; measured Eα, Iα, E(13C), 13Cα-coin; deduced 17O excitation energy spectrum. 17O; deduced levels, J, π. Comparison with other data.

doi: 10.1140/epja/i2009-10827-1
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Data from this article have been entered in the XUNDL database. For more information, click here.


2009ZA09      Phys.Rev. C 80, 064610 (2009)

M.Zadro, P.Figuera, A.Di Pietro, F.Amorini, M.Fisichella, O.Goryunov, M.Lattuada, C.Maiolino, A.Musumarra, V.Ostashko, M.Papa, M.G.Pellegriti, F.Rizzo, D.Santonocito, V.Scuderi, D.Torresi

Elastic scattering of 6Li on 64Zn at near-barrier energies

NUCLEAR REACTIONS 64Zn(6Li, 6Li), E=12.0, 13.0, 13.8, 15.0, 16.5, 18.0, 20.0, 22.0 MeV; measured 6Li spectra, σ, and σ(θ). Optical model analysis.

doi: 10.1103/PhysRevC.80.064610
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1769.


2008LA08      Phys.Lett. B 664, 157 (2008)

M.La Cognata, A.Del Zoppo, P.Figuera, A.Musumarra, R.Alba, S.Cherubini, N.Colonna, L.Cosentino, V.Crucilla, A.Di Pietro, M.Gulino, L.Lamia, M.G.Pellegriti, R.G.Pizzone, S.M.R.Puglia, G.G.Rapisarda, C.Rolfs, S.Romano, M.L.Sergi, C.Spitaleri, S.Tudisco, A.Tumino

On the magnitude of the 8Li + 4He → 11B + n reaction cross section at the Big-Bang temperature

NUCLEAR REACTIONS 4He(8Li, n), E(cm)=1.05 MeV; 4He(9Be, n), E(cm)=1.45 MeV; measured En, In, σ. Comparison with other data.

doi: 10.1016/j.physletb.2008.05.026
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1660.


2007DI20      Eur.Phys.J. Special Topics 150, 15 (2007)

A.Di Pietro

Reaction mechanisms in collisions induced by halo and/or weakly bound radioactive nuclei around the barrier

doi: 10.1140/epjst/e2007-00254-0
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2007MI47      Eur.Phys.J. Special Topics 150, 43 (2007)

M.Milin, A.Maggio, L.Acosta, M.A.G.Alvarez, C.Angulo, E.Casarejos, N.de Sereville, A.Di Pietro, P.Figuera, M.Fisichella, M.Freer, Th.Keutgen, M.Lattuada, M.Majer, I.Martel, D.Miljanic, F.Pansini, D.Price, A.M.Sanchez-Benitez, N.Soic, M.Uroic, M.Zadro

Reactions induced by 35MeV 6He beam on 12C and 14C

doi: 10.1140/epjst/e2007-00262-0
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2007OS03      Ukr.J.Phys. 52, 525 (2007)

V.Ostashko, M.Lattuada, O.Goryunov, A.Di Pietro, D.Miljanic, M.Zadro, A.Musumara, M.-G.Pellegriti, S.Romano, S.Tudisco, A.Tumino, P.Figuera

8Be nucleus resonances at the excitation energy Ex < 35 MeV in the three-particle reaction 9Be + 13C → 14C + α + α

NUCLEAR REACTIONS 9Be(13C, α14C), E=89.45 MeV; measured particle energies and coincidences. 8Be deduced levels.


2007OS05      Iader.Fiz.Enerh. 8 no.1, 45 (2007)

V.Ostashko, M.Lattuada, M.Milin, O.Goryunov, A.Di Pietro, D.Miljanic, M.Zadro, A.Musumara, M.-G.Pellegriti, S.Romano, S.Tudisco, A.Tumino, P.Figuera

Investigation of α-3He resonances at relative energy 1<Ex<20 in three particles processes 9Be + 13C → 15C + α + 3He

NUCLEAR REACTIONS 9Be(13C, 15C), E=89.45 MeV; measured reaction products. 7Be;deduced energies of resonances.

doi: 10.15407/jnpae
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2007SC46      Eur.Phys.J. Special Topics 150, 53 (2007)

V.Scuderi, M.Zadro, A.Di Pietro, P.Figuera, M.Lattuada, F.Pansini, M.Papa, D.Vinciguerra, O.Yu.Goryunov, A.Khouaja, V.Lyapin, C.Nociforo, V.V.Ostashko

Inverse kinematics resonance scattering on thick target with EXCYT beams

NUCLEAR REACTIONS 4He(9Be, 9Be), E=30 MeV; 4He(18O, 18O), E=56 MeV; measured elastic scattering excitation functions.

doi: 10.1140/epjst/e2007-00265-9
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2007ZA09      Nucl.Instrum.Methods Phys.Res. B259, 836 (2007)

M.Zadro, A.Di Pietro, P.Figuera, M.Fisichella, M.Lattuada, A.Maggio, F.Pansini, M.Papa, V.Scuderi, O.Yu.Goryunov, V.V.Ostashko

Stopping power of helium gas for 9Be ions from 2 to 31 MeV

NUCLEAR REACTIONS 4He(9Be, x), E=2-31 MeV; measured stopping power. Compared results to calculations and existing data.

doi: 10.1016/j.nimb.2007.02.078
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0472.


2006AG11      Nucl.Instrum.Methods Phys.Res. A565, 406 (2006)

C.Agodi, R.Alba, L.Calabretta, S.Cherubini, L.Cosentino, A.Del Zoppo, A.Di Pietro, P.Figuera, M.Gulino, A.Musumarra, M.G.Pellegriti, R.Pizzone, C.Rolfs, S.Romano, C.Spitaleri, S.Tudisco, A.Tumino

In flight production of a 8Li radioactive beam for Big Bang nucleosynthesis investigations at LNS Catania

NUCLEAR REACTIONS 2H, C(7Li, X)4He/7Li/8Li/7Be/8B/11B, E=23 MeV; measured yields. 4He(8Li, n), E(cm) ≈ 1.25 MeV; measured σ.

doi: 10.1016/j.nima.2006.06.053
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1455.


2006DI11      Phys.Atomic Nuclei 69, 1366 (2006)

A.Di Pietro, P.Figuera, V.Scuderi, F.Amorini, C.Angulo, G.Cardella, E.Casarejos, S.Cherubini, J.Lu, C.Marchetta, A.Musumarra, M.Papa, M.Pellegriti, R.G.Pizzone, R.Raabe, F.Rizzo, J.L.Sida, W.Tian

Structure Effects on Reaction Mechanisms in Collisions Induced by Radioactive Ion Beams

NUCLEAR REACTIONS 64Zn(α, X), (6He, X), E(cm) ≈ 7.5-16.5 MeV; measured fusion excitation functions; deduced no halo structure effect. 12C(10B, X), E=42 MeV; 9Be(13N, X), E=45 MeV; measured evaporation residue yields.

doi: 10.1134/S106377880608014X
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2006KA01      Nucl.Phys. A765, 294 (2006)

O.R.Kakuee, M.A.G.Alvarez, M.V.Andres, S.Cherubini, T.Davinson, A.Di Pietro, W.Galster, J.Gomez-Camacho, A.M.Laird, M.Lamehi-Rachti, I.Martel, A.M.Moro, J.Rahighi, A.M.Sanchez-Benitez, A.C.Shotter, W.B.Smith, J.Vervier, P.J.Woods

Long range absorption in the scattering of 6He on 208Pb and 197Au at 27 MeV

NUCLEAR REACTIONS 197Au(6He, 6He), E=27 MeV; measured quasi-elastic σ(θ); 208Pb(6He, 6He), E=27 MeV; analyzed elastic σ(θ); deduced optical model parameters, role of Coulomb dipole polarisability, reaction mechanism features.

doi: 10.1016/j.nuclphysa.2005.11.012
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0160.


2006MI19      Phys.Atomic Nuclei 69, 1360 (2006)

M.Milin, S.Cherubini, T.Davinson, A.Di Pietro, P.Figuera, D.Miljanic, A.Musumarra, A.Ninane, A.N.Ostrowski, M.G.Pellegriti, A.C.Shotter, N.Soic, C.Spitaleri, M.Zadro

Transfer, Sequential Decay, and Quasi-Free Reactions Induced by 18-MeV 6He Beam on 6Li, 7Li, and 12C

NUCLEAR REACTIONS 6,7Li, 12C(6He, 6He), E=18 MeV; measured elastic σ(θ). 6,7Li(6He, α), E=18 MeV; measured σ(E, θ), excitation energy spectra. Sequential decay and quasi-free reactions also discussed.

doi: 10.1134/S1063778806080138
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2006MI30      Europhys.Lett. 76, 801 (2006)

D.Miljanic, M.Milin, S.Cherubini, T.Davinson, A.Di Pietro, P.Figuera, A.Musumarra, A.Ninane, A.N.Ostrowski, M.G.Pellegriti, A.C.Shotter, N.Soic, C.Spitaleri, M.Zadro

6He quasi-free scattering off clusters in 6Li?

NUCLEAR REACTIONS 6,7Li(6He, X), E=18 MeV; 6Li(6He, d6He), E=18 MeV; measured charged particle spectra, coincidences; deduced quasi-free scattering off clusters in target nuclei.

doi: 10.1209/epl/i2006-10344-9
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2006OS06      Iader.Fiz.Enerh. 7 no.2, 34 (2006)

V.Ostashko, M.Lattuada, M.Milin, O.Goryunov, A.Di Pietro, D.Miljanic, M.Zadro, A.Musumara, M.-G.Pellegriti, S.Romano, S.Tudisco, A.Tumino, P.Figuera, H.Bohlen, W.von Oertzen, T.Kokalova, S.Shumerer

Cluster structure of 9Be from many-particles reactions

NUCLEAR REACTIONS 9Be(13C, α), (13C, 2α), E=89.45 MeV; measured reaction products, Eα, Iα, particleα-coin. 9Be; deduced resonance energies, possible J, π, cluster structure - α-5He and n-8Be of 9nuclei.

doi: 10.15407/jnpae
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2005MI13      Nucl.Phys. A753, 263 (2005)

M.Milin, M.Zadro, S.Cherubini, T.Davinson, A.Di Pietro, P.Figuera, D.Miljanic, A.Musumarra, A.Ninane, A.N.Ostrowski, M.G.Pellegriti, A.C.Shotter, N.Soic, C.Spitaleri

Sequential decay reactions induced by a 18 MeV 6He beam on 6Li and 7Li

NUCLEAR REACTIONS 6,7Li(6He, α6He), 6Li(6He, t2α), E=18 MeV; measured excitation energy spectra. 6,7Li, 8,9,10Be deduced cluster states.

doi: 10.1016/j.nuclphysa.2005.02.154
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2005PA75      Phys.Rev. C 72, 064608 (2005)

M.Papa, W.Tian, G.Giuliani, F.Amorini, G.Cardella, A.Di Pietro, P.P.Figuera, G.Lanzalone, S.Pirrone, F.Rizzo, D.Santonocito

Pre-equilibrium γ-ray emission induced in the 40Ca + 48Ca system at 10 MeV/nucleon and isospin equilibration processes

NUCLEAR REACTIONS 46Ti, 48Ca(40Ca, X), E=9.5, 10 MeV/nucleon; measured fragment yields, angular distributions, γ-spectra and yields, (particle)γ-coin; deduced γ emission from GDR, pre-equilibrium yield, degree of isospin equilibration. Constrained molecular dynamics calculation.

doi: 10.1103/PhysRevC.72.064608
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2004AM02      Phys.Rev. C 69, 014608 (2004)

F.Amorini, G.Cardella, A.Di Pietro, P.Figuera, G.Lanzalone, L.Jun, A.Musumarra, M.Papa, S.Pirrone, F.Rizzo, W.Tian, S.Tudisco

Statistical and preequilibrium γ-ray emission in heavy ion reactions at 25 MeV/nucleon

NUCLEAR REACTIONS 48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured Eγ, Iγ, (charged particle)γ-coin, yield ratios, angular distributions; deduced GDR contribution, preequilibrium gamma emission, maximum excitation energy.

doi: 10.1103/PhysRevC.69.014608
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2004CH22      Eur.Phys.J. A 20, 355 (2004)

S.Cherubini, P.Figuera, A.Musumarra, C.Agodi, R.Alba, L.Calabretta, L.Cosentino, A.Del Zoppo, A.Di Pietro, M.La Cognata, L.Lamia, L.Pappalardo, M.G.Pellegriti, R.G.Pizzone, A.Rinollo, C.Rolfs, S.Romano, C.Spitaleri, F.Strieder, S.Tudisco, A.Tumino

Cross-section of 8Li(α, n)11B: Inhomogeneous Big Bang nucleosynthesis

NUCLEAR REACTIONS 4He(8Li, n), E ≈ 10 MeV; measured neutron yield. 8Li(α, n), E(cm)=1.25 MeV; deduced σ. Astrophysical implications discussed.

doi: 10.1140/epja/i2003-10172-5
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0792.


2004DI07      Phys.Rev. C 69, 044613 (2004)

A.Di Pietro, P.Figuera, F.Amorini, C.Angulo, G.Cardella, S.Cherubini, T.Davinson, D.Leanza, J.Lu, H.Mahmud, M.Milin, A.Musumarra, A.Ninane, M.Papa, M.G.Pellegriti, R.Raabe, F.Rizzo, C.Ruiz, A.C.Shotter, N.Soic, S.Tudisco, L.Weissman

Reactions induced by the halo nucleus 6He at energies around the Coulomb barrier

NUCLEAR REACTIONS 64Zn(6He, 6He), (6He, αX), E(cm)=9.1 MeV; 64Zn(6He, 6He), (6He, αX), (α, α), E(cm)=12.4 MeV; measured σ(θ), Eα; deduced optical model parameters, reaction mechanism features. 64Zn(6He, xnypzα), (α, xnypzα), E(cm) ≈ 7-12 MeV; measured evaporation residue σ; deduced fusion excitation functions, reaction mechanism features. Comparisons with model predictions.

doi: 10.1103/PhysRevC.69.044613
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0258.


2004MI05      Nucl.Phys. A730, 285 (2004)

M.Milin, S.Cherubini, T.Davinson, A.Di Pietro, P.Figuera, D.Miljanic, A.Musumarra, A.Ninane, A.N.Ostrowski, M.G.Pellegriti, A.C.Shotter, N.Soic, C.Spitaleri, M.Zadro

The 6He scattering and reactions on 12C and cluster states of 14C

NUCLEAR REACTIONS 12C(6He, 6He), (6He, 6He'), E=18.0 MeV; measured σ(θ). 12C(6He, α), (6He, 2α), E=18.0 MeV; measured Eα, excitation energy spectra, σ(θ). 14C deduced cluster states.

doi: 10.1016/j.nuclphysa.2003.11.011
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0665.


2004MI45      Phys.Rev. C 70, 044603 (2004)

M.Milin, D.Miljanic, M.Aliotta, S.Cherubini, T.Davinson, A.Di Pietro, P.Figuera, A.Musumarra, A.Ninane, A.N.Ostrowski, M.G.Pellegriti, A.C.Shotter, N.Soic, C.Spitaleri, M.Zadro

Two-proton pickup reaction (6He, 8Be) on 12C, 16O, and 19F

NUCLEAR REACTIONS 6,7Li, 12C, 16O, 19F(6He, 8Be), E=18 MeV; measured excitation energy spectra, σ(θ); deduced direct process.

doi: 10.1103/PhysRevC.70.044603
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0720.


2004MI49      Nucl.Phys. A746, 183c (2004)

M.Milin, S.Cherubini, T.Davinson, A.Di Pietro, P.Figuera, D.Miljanic, A.Musumarra, A.Ninane, A.N.Ostrowski, M.G.Pellegriti, A.C.Shotter, N.Soic, C.Spitaleri, M.Zadro

Reactions induced by 18 MeV 6He beam on 6Li, 7Li and 12C

NUCLEAR REACTIONS 6,7Li(6He, 6He), E=17.9 MeV; measured σ(θ). 7Li(6He, X), E=17.9 MeV; measured particle yields.

doi: 10.1016/j.nuclphysa.2004.09.033
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0714.


2004PE21      Prog.Theor.Phys.(Kyoto), Suppl. 154, 349 (2004)

M.G.Pellegriti, C.Spitaleri, A.Musumarra, L.Calabretta, S.Cherubini, A.Di Pietro, P.Figuera, R.G.Pizzone, S.Romano, S.Tudisco, A.Tumino

Coulomb Suppression Effects in the Proton-Proton Elastic Scattering Extracted from the 2H(p, pp)n Reaction

NUCLEAR REACTIONS 2H(p, 2p), E=6 MeV; measured Ep, pp-coin. 1H(p, p), E=0.3-0.8 MeV; deduced σ, Coulomb supression effects. Trojan horse method.

doi: 10.1143/PTPS.154.349
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2003AN06      Nucl.Phys. A716, 211 (2003)

C.Angulo, M.Azzouz, P.Descouvemont, G.Tabacaru, D.Baye, M.Cogneau, M.Couder, T.Davinson, A.Di Pietro, P.Figuera, M.Gaelens, P.Leleux, M.Loiselet, A.Ninane, F.de Oliveira Santos, R.G.Pizzone, G.Ryckewaert, N.de Sereville, F.Vanderbist

Experimental determination of the 7Be+p scattering lengths

NUCLEAR REACTIONS 1H(7Be, 7Be), E=4.4, 5.7, 6.3 MeV; measured recoil proton spectra, σ(θ); deduced scattering lengths. Astrophysical implications discussed.

doi: 10.1016/S0375-9474(02)01584-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0495.


2003AN29      Nucl.Phys. A719, 300c (2003)

C.Angulo, P.Descouvemont, M.Cogneau, M.Couder, M.Gaelens, P.Leleux, M.Loiselet, G.Ryckewaert, G.Tabacaru, F.Vanderbist, T.Davinson, M.Azzouz, D.Baye, A.Di Pietro, P.Figuera, R.G.Pizzone, F.de Oliveira Santos, N.de Sereville

The elastic scattering 7Be + p at low energies: implications on the 7Be(p, γ)8Be S-factor

NUCLEAR REACTIONS 1H(7Be, p), E(cm)=0.3-0.75 MeV; measured recoil proton spectra, σ(θ); deduced scattering lengths. 8B deduced resonance parameters. R-matrix analysis, astrophysical implications discussed.

doi: 10.1016/S0375-9474(03)00936-9
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0495.


2003DI14      Europhys.Lett. 64, 309 (2003)

A.Di Pietro, P.Figuera, F.Amorini, C.Angulo, G.Cardella, S.Cherubini, T.Davinson, D.Leanza, J.Lu, H.Mahmud, M.Milin, A.Musumarra, A.Ninane, M.Papa, M.G.Pellegriti, R.Raabe, F.Rizzo, C.Ruiz, A.C.Shotter, N.Soic, S.Tudisco

Light-particle emission in the reaction 6He + 64Zn around the Coulomb barrier

NUCLEAR REACTIONS 64Zn(6He, 6He), (6He, αX), E(cm)=9, 12.4 MeV; 64Zn(α, α), (α, α'), E(cm)=12.4 MeV; measured Eα, σ(θ); deduced total σ, breakup and transfer contributions, optical model parameters.

doi: 10.1209/epl/i2003-00175-8
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0258.


2003LE26      Nucl.Phys. A722, 512c (2003)

A.Lepine-Szily, J.M.Oliveira, D.Galante, G.Amadio, V.Vanin, R.Lichtenthaler, V.Guimaraes, G.F.Lima, H.G.Bohlen, A.N.Ostrowski, A.Di Pietro, A.M.Laird, L.Maunoury, F.de Oliveira Santos, P.Roussel-Chomaz, H.Savajols, W.Trinder, A.C.C.Villari, A.de Vismes

Spectroscopy of light proton-rich unbound nuclei: 15F, 10, 11N

NUCLEAR REACTIONS 12C, 16O(14N, 15C), 10B(14N, 13B), (14N, 14B), E=30 MeV/nucleon; measured particle spectra. 15F, 10,11N deduced ground and excited states, resonance energies, widths.

doi: 10.1016/S0375-9474(03)01418-0
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1453.


2003PA32      Phys.Rev. C 68, 034606 (2003)

M.Papa, A.Bonanno, F.Amorini, A.Bonasera, G.Cardella, A.Di Pietro, P.P.Figuera, T.Maruyama, G.Pappalardo, F.Rizzo, S.Tudisco

Coherent and incoherent giant dipole resonance γ-ray emission induced by heavy ion collisions: Study of the 40Ca + 48Ca system by means of the constrained molecular dynamics model

NUCLEAR REACTIONS 46Ti, 48Ca(40Ca, X), E=25, 35, 50 MeV/nucleon; calculated coherent and incoherent Eγ, Iγ, fragment yields. Constrained molecular dynamics model.

doi: 10.1103/PhysRevC.68.034606
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2003PI14      Nucl.Phys. B(Proc.Supp.) S118, 455 (2003)

R.G.Pizzone, C.Spitaleri, M.Lattuada, A.Musumarra, M.G.Pellegriti, C.Rolfs, D.Miljanic, A.Di Pietro, P.Figuera, S.Romano, S.Tudisco, A.Tumino, S.Typel, H.H.Wolter, V.Castellani, S.Degl'Innocenti, A.Imperio

The 7Li(p, α)4He fusion reaction studied via the Trojan Horse Method and its astrophysical implications

NUCLEAR REACTIONS 7Li(d, 2α), E not given; measured not given. 7Li(p, α), E=low; deduced astrophysical S-factor, electron screening potential.

doi: 10.1016/S0920-5632(03)01356-2
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2003RA18      Phys.Rev. C 67, 044602 (2003)

R.Raabe, A.Andreyev, M.Huyse, A.Piechaczek, P.Van Duppen, L.Weissman, A.Wohr, C.Angulo, S.Cherubini, A.Musumarra, D.Baye, P.Descouvemont, T.Davinson, A.Di Pietro, A.M.Laird, A.Ostrowski, A.Shotter, L.I.Galanina, N.S.Zelenskaya

2n-transfer contribution in the 4He(6He, 6He)4He cross section at Ec.m.=11.6 MeV

NUCLEAR REACTIONS 4He(6He, 6He), E=11.6 MeV; measured σ(θ); deduced two-neutron transfer contribution. DWBA and double-folding potential analysis.

doi: 10.1103/PhysRevC.67.044602
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2003SP02      Nucl.Phys. A719, 99c (2003)

C.Spitaleri, S.Cherubini, A.Del Zoppo, A.Di Pietro, P.Figuera, M.Gulino, M.Lattuada, D.Miljanic, A.Musumarra, M.G.Pellegriti, R.G.Pizzone, C.Rolfs, S.Romano, S.Tudisco, A.Tumino

The Trojan Horse Method in nuclear astrophysics

NUCLEAR REACTIONS 6,7Li(p, α), 6Li(d, α), E=low; analyzed σ, astrophysical S-factors. Comparisons if direct measurements and Trojan Horse method.

doi: 10.1016/S0375-9474(03)00975-8
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2003TU02      Phys.Rev. C 67, 065803 (2003)

A.Tumino, C.Spitaleri, A.Di Pietro, P.Figuera, M.Lattuada, A.Musumarra, M.G.Pellegriti, R.G.Pizzone, S.Romano, C.Rolfs, S.Tudisco, S.Typel

Validity test of the "Trojan horse" method applied to the 6Li(p, α)3He reaction

NUCLEAR REACTIONS 2H(6Li, 3Heα), E=25 MeV; measured En, Eα, E(3He), angular distributions, correlations. 6Li(p, α), E(cm) < 2.4 MeV; deduced astrophysical S-factors. Trojan horse method, modified PWBA calculations, comparison with previous results.

doi: 10.1103/PhysRevC.67.065803
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2003TU06      Nucl.Phys. A718, 499c (2003)

A.Tumino, C.Spitaleri, S.Cherubini, A.Di Pietro, P.Figuera, M.Gulino, M.Lattuada, A.Musumarra, M.G.Pellegriti, R.G.Pizzone, S.Romano, C.Rolfs, S.Tudisco, S.Typel

Indirect study of the 6Li(p, α)3He reaction at astrophysical energies

NUCLEAR REACTIONS 2H(6Li, 3Heα), E=25 MeV; measured particle spectra, coincidence yield. 6Li(p, α), E < 2.3 MeV; deduced astrophysical S-factors.

doi: 10.1016/S0375-9474(03)00869-8
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2002CH29      Nucl.Phys. A701, 632c (2002)

S.Cherubini, C.Angulo, M.Couder, W.Galster, J.S.Graulich, P.Leleux, P.Lipnik, M.Loiselet, A.Musumarra, A.Ninane, G.Ryckewaert, J.Vervier, M.Aliotta, P.Figuera, M.Lattuada, M.G.Pellegriti, C.Spitaleri, T.Davinson, A.Di Pietro, A.M.Laird, A.N.Ostrowski, A.C.Shotter, P.J.Woods, J.Hinnefeld, S.Typel, H.Wolter

New Developments and Recent Results in Nuclear Astrophysics at Louvain-la-Neuve

doi: 10.1016/S0375-9474(01)01657-8
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2002DA16      Nucl.Phys. A701, 188c (2002)

T.Davinson, A.M.Laird, A.Di Pietro, A.N.Ostrowski, A.C.Shotter, P.J.Woods, S.Cherubini, W.Galster, P.Leleux, J.Vervier

Louvain-Edinburgh Detector Array (LEDA): A silicon detector array for use with radioactive nuclear beams

doi: 10.1016/S0375-9474(01)01571-8
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2002GR27      Phys.Rev. C 66, 055802 (2002)

D.Groombridge, A.C.Shotter, W.Bradfield-Smith, S.Cherubini, T.Davinson, A.Di Pietro, J.Gorres, J.S.Graulich, A.M.Laird, P.Leleux, A.Musumarra, A.Ninane, A.N.Ostrowski, J.Rahighi, H.Schatz, M.Wiescher, P.J.Woods

Breakout from the hot CNO cycle via the 18Na(α, π)21Na reaction. II. Extended energy range Ec.m. ∼ 1.7-2.9 MeV

NUCLEAR REACTIONS 4He(18Ne, p), E(cm) ≈ 1.7-2.9 MeV; measured proton spectra. 22Mg deduced resonance energies, widths. 18Ne(α, p), E=low; deduced astrophysical reaction rates.

doi: 10.1103/PhysRevC.66.055802
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2002LA29      Phys.Rev. C66, 048801 (2002)

A.M.Laird, S.Cherubini, A.N.Ostrowski, M.Aliotta, T.Davinson, A.Di Pietro, P.Figuera, W.Galster, J.S.Graulich, D.Groombridge, J.Hinnefeld, M.Lattuada, P.Leleux, L.Michel, A.Musumarra, A.Ninane, M.G.Pellegriti, A.C.Shotter, C.Spitaleri, A.Tumino, J.Vervier, P.Woods

Indirect study of the astrophysically important 15O(α, γ)19Ne reaction through 2H(18Ne, 19Ne)1H

NUCLEAR REACTIONS 2H(18Ne, 19Ne), E=54.3 MeV; measured excitation energy spectra. 19Ne levels deduced branching ratios. Implications for astrophysical reaction rate discussed.

doi: 10.1103/PhysRevC.66.048801
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2002LE16      Phys.Rev. C65, 054318 (2002)

A.Lepine-Szily, J.M.Oliveira, Jr., V.R.Vanin, A.N.Ostrowski, R.Lichtenthaler, A.Di Pietro, V.Guimaraes, A.M.Laird, L.Maunoury, G.F.Lima, F.de Oliveira Santos, P.Roussel-Chomaz, H.Savajols, W.Trinder, A.C.C.Villari, A.de Vismes

Observation of the Particle-Unstable Nucleus 10N

NUCLEAR REACTIONS 7Li, 10,11B, 12C(14N, 14B), E=30 MeV/nucleon; measured particle spectra. 10N deduced ground-state resonance energy, width.

doi: 10.1103/PhysRevC.65.054318
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2002RA27      Nucl.Phys. A701, 387c (2002)

R.Raabe, L.Weissman, A.Andreyev, C.Angulo, D.Baye, W.Bradfield-Smith, S.Cherubini, T.Davinson, P.Descouvemont, A.Di Pietro, M.Huyse, A.M.Laird, W.F.Mueller, A.Musumarra, A.Ostrowski, A.Piechaczek, A.Shotter, G.Terwagne, P.Van Duppen, A.Wohr

Measurement of the 4He(6He, 6He)4He Cross Section with a 4He-Implanted Al Target

NUCLEAR REACTIONS 4He(6He, 6He), E=29.6 MeV; measured σ(θ). Target nuclei implanted in aluminum. Comparisons with previous results.

doi: 10.1016/S0375-9474(01)01616-5
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2002TU04      Europhys.Lett. 58, 811 (2002)

S.Tudisco, G.Cardella, F.Amorini, A.Anzalone, A.Di Pietro, P.Figuera, F.Giustolisi, G.Lanzalone, J.Lu, A.Musumarra, M.Papa, S.Pirrone, F.Rizzo

Limiting excitation energy for GDR gamma decay

NUCLEAR REACTIONS 48Ca, 46Ti(40Ca, X), E=25 MeV/nucleon; measured Eγ, Iγ, (charged particle)γ-coin; deduced maximum GDR excitation energy, related features. Comparison with model predictions.

doi: 10.1209/epl/i2002-00446-x
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2001CH44      Nucl.Phys. A688, 465c (2001)

S.Cherubini, W.Galster, J.S.Graulich, P.Leleux, M.Loiselet, A.Musumarra, A.Ninane, G.Ryckewaert, J.Vervier, M.Aliotta, P.Figuera, M.Lattuada, M.G.Pellegriti, C.Spitaleri, T.Davinson, A.Di Pietro, A.M.Laird, A.N.Ostrowski, A.C.Shotter, P.J.Woods, J.Hinnefeld, S.Typel, H.Wolter

The 15O(α, γ)19Ne* Reaction using a 18Ne Radioactive Beam

NUCLEAR REACTIONS 2H(18Ne, p), E=45-54 MeV; measured Ep, Eα, σ(θ), decay Q-value spectrum. Applicability of results to 15O(α, γ) reaction discussed.

doi: 10.1016/S0375-9474(01)00757-6
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2001DI12      Nucl.Phys. A689, 668 (2001)

A.Di Pietro, P.Figuera, R.Neal, C.Sukosd, F.Amorini, F.Binon, W.Bradfield-Smith, M.Cabibbo, G.Cardella, R.Coszach, T.Davinson, P.Duhamel, A.Emmi, R.Irvine, P.Leleux, J.Mackenzie, A.Musumarra, A.Ninane, M.Papa, G.Pappalardo, F.Rizzo, A.C.Shotter, S.Tudisco, J.Vanhorenbeeck, P.J.Woods

Different Aspects of Nuclear Structure and Reaction Mechanisms in the Collision 13N + 11B

NUCLEAR REACTIONS 11B(13N, X), (13N, 12C), E=29.5, 45 MeV; 10B(14N, X), E=47 MeV; measured particle spectra, σ(θ), Eγ, Iγ, fusion σ. 24Mg deduced 6-α decay features, GDR γ-emission features.

doi: 10.1016/S0375-9474(00)00704-1
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2001FI10      Prog.Part.Nucl.Phys. 46, 317 (2001)

P.Figuera, A.Di Pietro, F.Amorini, G.Cardella, J.Lu, A.Musumarra, M.Papa, G.Pappalardo, M.G.Pellegriti, F.Rizzo, S.Tudisco, T.Davinson, H.Mahmud, A.Ostrowski, C.Ruiz, A.C.Shotter, C.Angulo, S.Cherubini, A.Ninane, M.Milin, N.Soic, R.Raabe

Fusion Reaction Studies with RIBs and Possible Experimental Techniques

doi: 10.1016/S0146-6410(01)00137-5
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2001GR01      Phys.Rev. C63, 011302 (2001)

J.-S.Graulich, S.Cherubini, R.Coszach, S.El Hajjami, W.Galster, P.Leleux, W.Bradfield-Smith, T.Davinson, A.Di Pietro, A.C.Shotter, J.Gorres, M.Wiescher, F.Binon, J.Vanhorenbeeck

7.07 MeV Resonant State in 19Ne Reexamined Through a New Measurement of the 18F(p, α)15O Reaction and 18F(p, p) Scattering

NUCLEAR REACTIONS 18F(p, p), (p, α), E(cm)=0.74 MeV; measured Ep, Ip(θ), Eα, Iα(θ). 19Ne deduced resonance spin, π, strength, widths. Comparison withother measurement. Radioactive beams, nuclear astrophysics.

doi: 10.1103/PhysRevC.63.011302
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