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NSR database version of April 11, 2024.

Search: Author = G.Pappalardo

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2007BA37      Acta Phys.Pol. B38, 1025 (2007)

A.Badala, R.Barbera, F.Blanco, G.Lo Re, G.S.Pappalardo, A.Pulvirenti, F.Riggi

Short-lived resonances in ALICE: Reconstruction of K*(892)0 and Λ(1520) signals in p-p and Pb-Pb collisions


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
Citations: PlumX Metrics


2002VA30      Acta Phys.Hung.N.S. 16, 315 (2002)

L.Vannucci, N.Bustreo, A.Badala, R.Barbera, G.Lo Re, A.Palmeri, A.Pulvirenti, G.S.Pappalardo, F.Riggi, B.S.Nilsen

Primary Vertex in the ALICE Experiment in Absence of the Event Reconstruction

doi: 10.1556/APH.16.2002.1-4.34
Citations: PlumX Metrics


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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2000PA18      Phys.Rev. C61, 044614 (2000)

M.Papa, F.Amorini, G.Cardella, M.Cavallaro, P.Figuera, A.Musumarra, G.Pappalardo, F.Rizzo, S.Romano, S.Tudisco, B.Heusch, Q.Wang, S.Si, J.Lu, W.Tian, P.Hu

Fluctuations in the Excitation Functions of Dissipative Collisions Induced on the 27Al + 27Al System in the Laboratory Energy Range 114.2-123 MeV

NUCLEAR REACTIONS 27Al(27Al, X), E=114.2-122.8 MeV; measured fragments σ(θ), energy, angular correlations; deduced energy coherence lengths, average angular velocity of intermediate dinuclear system. Partially overlapped molecular level model.

doi: 10.1103/PhysRevC.61.044614
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1999DI04      Phys.Rev. C59, 1185 (1999)

A.Di Pietro, F.Amorini, W.Bradfield-Smith, G.Cardella, T.Davinson, P.Figuera, W.Galster, R.Irvine, P.Leleux, J.Mackenzie, A.Musumarra, R.Neal, A.Ninane, G.Pappalardo, F.Rizzo, A.C.Shotter, C.Sukosd, S.Tudisco

6α Particle Emission in the Reaction 13N + 11B

NUCLEAR REACTIONS 11B(13N, 12C), E=29.5, 45 MeV; measured σ(E) for 6α decay. 12C deduced excited states. Radioactive beam.

doi: 10.1103/PhysRevC.59.1185
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1999PA04      Eur.Phys.J. A 4, 69 (1999)

M.Papa, F.Amorini, M.Cabibbo, G.Cardella, A.Di Pietro, P.Figuera, A.Musumarra, G.Pappalardo, F.Rizzo, S.Tudisco

Pre-Equilibrium γ Ray Emission in Different Reaction Mechanisms at 8 MeV/nucleon

NUCLEAR REACTIONS 64Ni(35Cl, X), (12C, X), E ≈ 8 MeV/nucleon; analyzed γ-spectra; deduced pre-equilibrium γ-ray emission dynamical, statistical mechanisms. Boltzman-Noretheim-Vlasov calculations.

doi: 10.1007/s100500050205
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1999WA26      Chin.Phys.Lett. 16, 876 (1999)

Q.Wang, S.-L.Li, W.-D.Tian, P.-Y.Hu, J.Lu, F.Amorini, M.Cabibbo, G.Cardella, P.Figuere, A.Musumarra, M.Papa, G.Pappalardo, F.Rizzo, S.Romano, S.Tudisco, B.Heusch

Non-Equilibrium Statistic Features in Dissipative Heavy Ion Collision 27Al +27Al

NUCLEAR REACTIONS 27Al(27Al, X), E=114-127 MeV; measured σ(θ), σ(θ, E), energy autocorrelation; deduced non-equilibrium reaction mechanisms.

doi: 10.1088/0256-307X/16/12/007
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1998AM08      Phys.Rev. C58, 987 (1998)

F.Amorini, M.Cabibbo, G.Cardella, A.Di Pietro, P.Figuera, A.Musumarra, M.Papa, G.Pappalardo, F.Rizzo, S.Tudisco

Preequilibrium γ Ray Emission in Complete and Incomplete Fusion Reactions in the Collision 12C + 64Ni at 8 MeV/nucleon

NUCLEAR REACTIONS 64Ni(12C, X), (12C, 8Be), (12C, α), E=94.7 MeV; measured Eγ, Iγ, (charged particle)γ-coin; deduced preequilibrium γ emission contribution.

doi: 10.1103/PhysRevC.58.987
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1998AS06      Yad.Fiz. 61, No 12, 2117 (1998); Phys.Atomic Nuclei 61, 2007 (1998)

V.N.Aseev, S.K.Esin, Yu.K.Gavrilov, M.B.Golubeva, F.F.Guber, T.L.Karavicheva, L.V.Kravchuk, A.B.Kurepin, V.A.Matveev, P.N.Ostroumov, V.L.Serov, K.A.Shileev, V.V.Tiflov, A.Badala, R.Barbera, A.Palmeri, G.Pappalardo, F.Riggi, R.Turrisi, L.Bimbot

Investigation of the Production of Positive Pions in the Reaction pCu → π+X at Proton Energies Around 350 MeV

NUCLEAR REACTIONS Cu(p, π+X), E=340-364 MeV; measured pions σ(E, θ=90°); deduced enhancement, possible nonnucleonic degrees of freedom.

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0713.


1998BA03      Phys.Rev. C57, 166 (1998)

A.Badala, R.Barbera, A.Bonasera, M.Gulino, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi

Search for the Electromagnetic Decay of Δ(1232) Resonance in Nuclear Matter

NUCLEAR REACTIONS 27Al(36Ar, pX), E=95 MeV/nucleon; measured p-γ invariant mass spectra, pγ(θ); deduced Δ → Nγ relative σ.

doi: 10.1103/PhysRevC.57.166
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1998BA31      Phys.Rev. C57, 2765 (1998)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, G.Rizza, A.C.Russo, G.Russo, R.Turrisi

Reply to ' Comment on ' Measurement of the Space-Time Extent of the Hard-Photon Emitting Source in Heavy-Ion Collisions at 100 MeV/Nucleon ' '

doi: 10.1103/PhysRevC.57.2765
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1998BA35      Phys.Rev.Lett. 80, 4863 (1998)

A.Badala, R.Barbera, M.Bassi, A.Bonasera, M.Gulino, F.Librizzi, A.Mascali, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi, V.Dunin, C.Ekstrom, G.Ericsson, B.Hoistad, J.Johansson, T.Johansson, L.Westerberg, J.Zlomanczuk, A.Sibirtsev

Subthreshold Production of Low Momentum K+ in p + C at 1.2 GeV

NUCLEAR REACTIONS 12C(p, K+), E=1.2 GeV; measured σ(E, θ); deduced σ, reaction mechanism.

doi: 10.1103/PhysRevLett.80.4863
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1998DI14      Nuovo Cim. 111A, 909 (1998)

A.di Pietro, R.Neal, F.Amorini, W.Bradfield-Smith, G.Cardella, T.Davinson, P.Figuera, W.Galster, R.Irvine, P.Leleux, J.Mackenzie, A.Musumarra, A.Ninane, G.Pappalardo, A.C.Shotter, C.Sukosd, F.Rizzo, S.Tudisco, P.Woods

The Transfer Reaction 11B(13N, 12C)12C

NUCLEAR REACTIONS 11B(13N, 12C), E=29.5, 45 MeV; measured Eγ, (particle)γ-, (particle)(particle)-coin, σ(θ); deduced 6α-events origin. 13N deduced ground state features.

doi: 10.1007/BF03035977
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1997AS02      Phys.Rev. C56, R596 (1997)

V.Aseev, Yu.Gavrilov, F.Guber, M.Golubeva, T.Karavicheva, A.Kurepin, K.Shileev, V.Tiflov, A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, R.Turrisi, L.Bimbot

Search for a Narrow Resonance Structure in Pion Production from p + Cu Near 350 MeV

NUCLEAR REACTIONS Cu(p, π+), E=340-364 MeV; measured σ(Eπ, θ) vs E; deduced narrow resonance e, Γ.

doi: 10.1103/PhysRevC.56.R596
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1997BA27      Phys.Rev. C55 2506 (1997)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi

Pion Shadowing as a Tool to Study the Topology of Heavy-Ion Collisions Intermediate Energies

NUCLEAR REACTIONS 27Al, 112Sn(36Ar, X), E=95 MeV/nucleon; measured fragment azimuthal angular distribution with respect to the reaction plane, two-photon invariant mass distribution relative to composite system, π0 production; deduced source location, production time-scale, pion shadowing features.

doi: 10.1103/PhysRevC.55.2506
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1997BA28      Phys.Rev. C55, 2521 (1997)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, G.Rizza, A.C.Russo, G.Russo, R.Turrisi

Measurement of the Space-Time Extent of the Hard-Photon Emitting Source Heavy-Ion Collisions at 100 MeV/nucleon

NUCLEAR REACTIONS 27Al, 112Sn, 197Au(36Ar, Xγ), E=95 MeV/nucleon; measured γγ-correlation function vs relative momentum, relative energy; deduced space-time extents of the hard-photon emitting source.

doi: 10.1103/PhysRevC.55.2521
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1997BB07      Nucl.Instrum.Methods Phys.Res. A388, 109 (1997)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, R.Turrisi

Detection η Mesons in Heavy-Ion Collisions at 100 MeV/Nucleon

NUCLEAR REACTIONS 27Al, 58Ni, 112Sn, 197Au(36Ar, X), E=95 MeV/nucleon; analyzed invariant mass spectra; deduced η detection sensitivity. GEANT simulations.

doi: 10.1016/S0168-9002(97)00114-9
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1997SA07      Z.Phys. A357, 67 (1997)

M.Sandoli, L.Campajola, A.De Rosa, A.D'Onofrio, G.Inglima, M.La Commara, A.Ordine, D.Pierroutsakou, V.Roca, M.Romano, M.Romoli, F.Terrasi, M.Trotta, G.Cardella, M.Papa, G.Pappalardo, F.Rizzo, N.Alamanos, F.Auger, A.Gillibert

Preequilibrium GDR Excitation and Entrance Channel Angular Momentum Effects

NUCLEAR REACTIONS 92Mo(35Cl, X), E=260 MeV; measured γ(ejectile)-coin; deduced preequilibrium GDR excitation, γ-decay, entrance channel angular momentum effects role.

doi: 10.1007/s002180050215
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1996BA18      Phys.Rev. C53, 1782 (1996)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi

Nuclear Stopping in Heavy-Ion Collisions at 100 MeV/nucleon from Inclusive and Exclusive Neutral Pion Measurements

NUCLEAR REACTIONS 197Au, 27Al(36Ar, π0X), E=95 MeV/nucleon; measured σ(E(π0), θ); deduced stopping, reabsorption effects role.

doi: 10.1103/PhysRevC.53.1782
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1996BA76      Phys.Rev. C54, R2138 (1996)

A.Badala, R.Barbera, A.Bonasera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi

Search for Δ(1232)-Resonance Excitation in Heavy-Ion Collisions Around 100 MeV/nucleon

NUCLEAR REACTIONS 27Al(36Ar, X), E=95 MeV/nucleon; measured pπ0 correlations, invariant mass, relative angle distributions; deduced Δ(1232) mass, width, NN → NNπ channel σ. Model comparison.

doi: 10.1103/PhysRevC.54.R2138
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1995BA80      Phys.Rev.Lett. 74, 4779 (1995)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi

Photon-Photon Correlation in the 36Ar + 27Al Reaction at 95 MeV/Nucleon

NUCLEAR REACTIONS 27Al(36Ar, X), E=95 MeV/nucleon; measured photon-photon correlation; deduced emitting source T1/2, size. Intensity interferometry technique. Models comparison.

doi: 10.1103/PhysRevLett.74.4779
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1995BB15      Nucl.Instrum.Methods Phys.Res. B99, 657 (1995)

A.Badala, R.Barbera, F.Librizzi, A.Longhitano, D.Nicotra, A.Palmeri, G.S.Pappalardo, F.Riggi, A.Santoro, R.Turrisi, V.Aseev, A.Feschenko, Yu.Gavrilov, F.Guber, M.Golubeva, T.Karavicheva, A.Kurepin, P.Ostroumov, V.Potapov, V.Tiflov, A.Zhuravlev

Preliminary Results with the CLAMSUD Pion Spectrometer at the Moscow Meson Factory

NUCLEAR REACTIONS 10B, Cu(p, π+), E=209, 247, 364 MeV; measured pion spectra, σ(θ, E(π)). The CLAMSUD magnetic pion spectrometer.

doi: 10.1016/0168-583X(94)00664-4
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1995CA05      Nucl.Phys. A583, 119c (1995)

L.Campajola, A.De Rosa, A.D'Onofrio, L.Gialanella, G.Inglima, M.La Commara, A.Ordine, D.Pierroutsakou, V.Roca, M.Romano, M.Romoli, M.Sandoli, F.Terrasi, F.Amorini, G.Cardella, R.Croce, A.Di Pietro, A.Musumarra, M.Papa, G.Pappalardo, F.Rizzo, J.P.S.Van Shagen, N.Alamanos, F.Auger, A.Gillibert, D.Prosperi, G.De Angelis, E.Fioretto

Pre-Equilibrium Dipole Strength Excitation in Dissipative Heavy-Ion Collisions

NUCLEAR REACTIONS 64Ni(35Cl, X), E=271 MeV; 92Mo(35Cl, X), E=271, 260 MeV; measured (fragment)γ-coin; deduced intermediate systems dipole transition strengths.

doi: 10.1016/0375-9474(94)00644-3
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1995CA40      Z.Phys. A352, 421 (1995)

L.Campajola, A.De Rosa, A.D'Onofrio, L.Gialanella, G.Inglima, M.La Commara, A.Ordine, D.Pierroutsakou, V.Roca, M.Romano, M.Romoli, M.Sandoli, F.Terrasi, G.Cardella, A.Di Pietro, A.Musumarra, M.Papa, G.Pappalardo, F.Rizzo, N.Alamanos, F.Auger, A.Gillibert, A.Incicchitti, D.Prosperi, G.De Angelis, E.Fioretto, R.Bernabei

Pre-Equilibrium γ-Ray Emission in Dissipative Heavy-Ion Collisions

NUCLEAR REACTIONS 64Ni(35Cl, X), E=7.7 MeV/nucleon; measured γ(fragment)-coin; deduced emission mechanisms, energy dependence.

doi: 10.1007/BF01299760
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1995PA42      Z.Phys. A353, 205 (1995)

M.Papa, G.Cardella, A.Di Pietro, S.L.Li, A.Musumarra, G.Pappalardo, F.Rizzo, A.De Rosa, G.Inglima, M.La Commara, D.Pierroutsakou, M.Romoli

Highly Excited ' Nuclear Molecules ': A way to explain the fluctuations in DBHIC excitation functions. Study of the 28Si + 28Si Colliding System at 5.3 MeV.A

NUCLEAR REACTIONS 28Si(28Si, X), E=150-156 MeV; measured fragment yield vs E, Q-value spectra, σ(fragment θ); deduced model parameters, excited nuclear molecule formation evidence. Dissipative binary heavy-ion collisions.

doi: 10.1007/BF01295899
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1995VA05      Nucl.Phys. A583, 123c (1995)

J.P.S.van Schagen, F.Amorini, G.Cardella, R.Croce, A.Di Pietro, A.Musumarra, M.Papa, G.Pappalardo, F.Rizzo, L.Campajola, A.DeRosa, A.D'Onofrio, G.Inglima, M.LaCommara, D.Pierroutsakou, V.Roca, M.Romano, M.Romoli, M.Sandoli, F.Terrasi

High-Energy γ-Rays Measured in Coincidence with α-Particles in the Reaction 19F + 12C at E(lab) = 121.7 MeV

NUCLEAR REACTIONS 12C(19F, X), E=121.7 MeV; measured αγ-coin, γ-yields; deduced reaction mechanism related features. Statistical model analysis.

doi: 10.1016/0375-9474(94)00645-4
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1994BB11      Nucl.Instrum.Methods Phys.Res. A351, 387 (1994)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi

Photon Intensity Interferometry with Multidetectors

NUCLEAR REACTIONS 27Al(36Ar, X), E=95 MeV/nucleon; analyzed, simulated invariant mass distribution data; deduced performance of BaF2 ball multi-detector as photon intensity interferometer.

doi: 10.1016/0168-9002(94)91368-4
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1994DI09      Z.Phys. A350, 199 (1994)

A.Di Pietro, G.Cardella, A.Musumarra, M.Papa, G.Pappalardo, F.Rizzo, A.De Rosa, A.D'Onofrio, G.Inglima, V.Roca, M.Romano, M.Romoli, M.Sandoli, F.Terrasi, E.Fioretto

Gamma-Ray Multiplicity Measurements in the 28Si + 64Ni Reaction at 163.8 MeV

NUCLEAR REACTIONS 64Ni(28Si, X), E=163.8 MeV; measured γ(charged particle)-coin, Z=2-16, γ-multiplicity; deduced quasielastic to damped reaction evidence. Statistical model analysis.

doi: 10.1007/BF01289583
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1994JU03      Z.Phys. A347, 181 (1994)

J.Julien, M.Bolore, J.Gosset, J.M.Hisleur, A.Mougeot, G.S.Pappalardo, B.Saghai, G.Sanouillet, D.Ardouin, H.Dabrowski, B.Erazmus, C.Lebrun, V.Bellini, L.Sperduto, C.Cerruti, S.Leray, D.Lebrun, P.De Saintignon, T.Johansson, K.Kilian, L.Bimbot

Search for an Enhanced Production of Low Energy Pions in C(p, π+)X, Cu(p, π+)X, and Cu(p, π0)X Reactions for 300 MeV ≤ T(p) ≤ 400 MeV

NUCLEAR REACTIONS C, Cu(p, π+X), Cu(p, π0X), E=300-400 MeV; measured pion yield low to high energy ratio; deduced structure evidence.

doi: 10.1007/BF01292374
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1994RI09      Z.Phys. A349, 169 (1994)

F.Rizzo, G.Cardella, A.De Rosa, A.Di Pietro, A.D'Onofrio, E.Fioretto, G.Inglima, A.Musumarra, M.Papa, G.Pappalardo, M.Romano, M.Romoli, F.Terrasi, M.Sandoli, G.S.Wang

Study of the Excitation Function Fluctuations of the Dissipative 28Si + 48Ti Binary Collision in the Incident Energy Interval from 206.9 MeV to 213.8 MeV

NUCLEAR REACTIONS 48Ti(28Si, X), E=206.9-213.8 MeV; measured σ(θ), yield vs E, fragment Z=8-15. Partially overlapping molecular level model analysis.

doi: 10.1007/BF01291176
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1993AG02      Phys.Lett. 308B, 220 (1993)

C.Agodi, R.Alba, G.Bellia, A.Bonasera, G.Cardella, R.Coniglione, A.Del Zoppo, A.De Rosa, P.Finocchiaro, E.Fioretto, F.Gulminelli, G.Inglima, M.Longo, C.Maiolino, E.Migneco, M.Papa, G.Pappalardo, P.Piattelli, F.Rizzo, M.Romoli, G.Russo, M.Sandoli, P.Sapienza

Evidence for Non-Statistical Gamma Ray Emission in the 28Si + 64Ni Binary Quasi-Elastic Reaction at 143 MeV Incident Energy

NUCLEAR REACTIONS 64Ni(28Si, X), E=143 MeV; measured γ(fragment)-coin; deduced nonstatistical γ-decay evidence, emission mechanism. Boltzmann-Nordheim-Vlasov calculation.

doi: 10.1016/0370-2693(93)91275-R
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1993BA02      Phys.Rev. C47, 231 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, C.Agodi, R.Alba, G.Bellia, R.Coniglione, A.Del Zoppo, P.Finocchiaro, C.Maiolino, E.Migneco, P.Piattelli, G.Russo, P.Sapienza, A.Peghaire

Neutral Pion Production in the 16O + 27Al Reaction at 94 MeV/nucleon

NUCLEAR REACTIONS 27Al(16O, xπ0), E=94 MeV/nucleon; measured σ(θ, E(π0)). Boltzmann-Nordheim-Vlasov equation.

doi: 10.1103/PhysRevC.47.231
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1993BA04      Phys.Lett. 299B, 11 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, G.Pollarolo, C.H.Dasso

16O Breakup on Al, Ni and Au Targets at 94 MeV/Nucleon

NUCLEAR REACTIONS 27Al, 58Ni, 197Au(16O, X), E=94 MeV/nucleon; measured projectile fragmentation, α-particle velocities; deduced evidence for saturation of mean energy transferred to projectile in collision.

doi: 10.1016/0370-2693(93)90876-J
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1993BA07      Z.Phys. A344, 455 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo

Subthreshold Pion Production from Nucleus-Nucleus Collisions Around 100 MeV/nucleon

NUCLEAR REACTIONS 27Al(36Ar, X), E=94 MeV/nucleon; calculated charge particle multiplicity, velocity distribution; deduced global variable analysis usefulness.


1993BA26      Phys.Rev. C48, 633 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi

Breakup of the Projectile in 16O-Induced Reactions on 27Al, 58Ni, and 197Au Targets Around 100 MeV/Nucleon

NUCLEAR REACTIONS 27Al, 58Ni, 197Au(16O, 4α); E=94 MeV/nucleon; measured σ(θα, Eα); deduced projectile fragmentation mechanism.

doi: 10.1103/PhysRevC.48.633
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1993BA53      Phys.Rev. C48, 2350 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi, C.Agodi, R.Alba, G.Bellia, R.Coniglione, A.Del Zoppo, P.Finocchiaro, C.Maiolino, E.Migneco, P.Piattelli, P.Sapienza, A.Peghaire

Impact-Parameter Dependence of Neutral Pion Production in the 36Ar on 27Al Collision at 95 MeV/nucleon

NUCLEAR REACTIONS 27Al(36Ar, X), E=95 MeV/nucleon; measured inclusive σ(θ(π0), E(π0)), charged particle multiplicity; deduced impact parameter dependence. Boltzmann-Nordheim-Vlasov model analysis. 4π multi-detector assembly.

doi: 10.1103/PhysRevC.48.2350
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1993BA56      Z.Phys. A346, 293 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo

Light Charge Particles Associated with Subthreshold Neutral Pion Emission in the 16O + 27Al Reaction

NUCLEAR REACTIONS 27Al(16O, X), E=94 MeV/nucleon; measured (light charged particle)π0-coin. Dynamical model analysis.

doi: 10.1007/BF01292520
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1993BA58      Phys.Lett. 316B, 240 (1993)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, G.Russo, R.Turrisi, G.Bizard, J.L.Laville

Peripheral Pion Production in Projection in Projectile Breakup Reactions at 94 MeV/nucleon

NUCLEAR REACTIONS 27Al(16O, αX), E=94 MeV/nucleon; measured απ+-, απ--coin; deduced pion production mechanism. Plastic scintillators range telescope, multi-element array.

doi: 10.1016/0370-2693(93)90320-H
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1993LA21      Phys.Scr. 48, 188 (1993)

J.L.Laville, A.Badala, R.Barbera, G.Bizard, D.Durand, A.Palmeri, G.S.Pappalardo, F.Riggi

Subthreshold Pion Production in Heavy Ion Collisions Around 100 MeV/u: A statistical process ( Question )

NUCLEAR REACTIONS 27Al, Ni, 197Au(16O, X), E=94 MeV/nucleon; measured (light fragment)(charged pion)-, p(light fragment)-coin; deduced particle production mechanism.

doi: 10.1088/0031-8949/48/2/013
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1993LA25      Nucl.Phys. A564, 564 (1993)

J.L.Laville, A.Badala, R.Barbera, G.Bizard, R.Bougault, D.Durand, A.Palmeri, G.S.Pappalardo, F.Riggi

Proton and Subthreshold Pion Production Correlated with Light Fragments: A statistical process ( Question )

NUCLEAR REACTIONS 27Al, 58Ni, 197Au(16O, π+X), (16O, π-X), (16O, pX), E=94 MeV/nucleon; measured coincident light nuclei; deduced pion, particle statistical emission evidence.

doi: 10.1016/0375-9474(93)90214-I
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1993MI02      Phys.Lett. 298B, 46 (1993)

E.Migneco, C.Agodi, R.Alba, G.Bellia, R.Coniglione, A.Del Zoppo, P.Finocchiaro, C.Maiolino, P.Piattelli, G.Russo, P.Sapienza, A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, A.C.Russo, A.Peghaire, A.Bonasera

Strong Impact Parameter Dependence of Hard Photon Production in Intermediate Energy Heavy Ion Collisions

NUCLEAR REACTIONS 197Au(129Xe, X), E=44 MeV/nucleon; measured light charged particle production, γ production probability vs particle multiplicity; deduced impact parameter role.

doi: 10.1016/0370-2693(93)91704-Q
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1992BA17      Phys.Rev. C45, 1730 (1992)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, F.Riggi, G.Bizard, D.Durand, J.L.Laville

Proton-Helium Correlation in 94 MeV/Nucleon 16O-Induced Reactions on Al, Ni, and Au Targets

NUCLEAR REACTIONS 27Al, 58Ni, 197Au(16O, pX), E=94 MeV/nucleon; measured σ(Ep, θ(light fragment), φ(light fragment)) vs light fragment velocity; deduced final state interactions role. Modified fireball model, participant-spectator picture.

doi: 10.1103/PhysRevC.45.1730
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1992BA41      Phys.Rev. C46, 604 (1992)

A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, A.Bonasera, F.Riggi, A.Adorno, L.Bimbot

Reactions 58,64Ni(p, π±) at 201 MeV

NUCLEAR REACTIONS 58,64Ni(p, π+), (p, π-), E=201 MeV; measured σ(θ(π), E(π)); deduced σ.

doi: 10.1103/PhysRevC.46.604
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0108.


1991AG04      Z.Phys. A340, 341 (1991)

C.Agodi, R.Alba, A.Anzalone, G.Bellia, G.Cardella, S.Cavallaro, R.Coniglione, A.Del Zoppo, P.Finocchiaro, C.Maiolino, E.Migneco, M.Papa, G.Pappalardo, P.Piattelli, F.Rizzo, G.Russo, P.Sapienza, Q.Wang, G.S.Wang, A.DeRosa, E.Fioretto, G.Inglima, M.Romoli, M.Sandoli

Search for High Energy γ-Rays Emission in 28Si, 32S + 64Ni Dissipative Reactions at About 5 MeV/amu Incident Energy

NUCLEAR REACTIONS 64Ni(32S, X), E=156 MeV; 64Ni(28Si, X), E=143 MeV; measured high energy γ(charged fragment)-coin; deduced reaction product emission mechanism.

doi: 10.1007/BF01294684
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1991BA01      Phys.Rev. C43, 190 (1991)

A.Badala, R.Barbera, A.Bonasera, M.Di Toro, A.Palmeri, G.S.Pappalardo, F.Riggi, G.Russo, G.Bizard, D.Durand, J.L.Laville

Statistical and Microscopic Description of Energetic Products in the Reactions Induced by 16O on 27Al, 58Ni, and 197Au at 94 MeV/Nucleon

NUCLEAR REACTIONS 58Ni, 197Au, 27Al(16O, p), (16O, π+), (16O, π-), E=94 MeV/nucleon; measured σ(Ep, θ), σ(E(π+), θ), σ(E(π-), θ). Calculated inclusive spectra. Statistical model, Boltzmann-Nordheim-Vlasov calculations.

doi: 10.1103/PhysRevC.43.190
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1991BA48      Europhys.Lett. 15, 145 (1991)

A.Badala, R.Barbera, G.Bizard, D.Durand, J.L.Laville, A.Palmeri, G.S.Pappalardo, F.Riggi

Energetic Particle Emission in Heavy-Ion Collisions Around 100 MeV/u

NUCLEAR REACTIONS 27Al, Ni, 197Au(16O, X), E=94 MeV/nucleon; measured Z=2 particle emitting source velocity, temperature; deduced phase space constraints. Particle-pion coincidences.

doi: 10.1209/0295-5075/15/2/006
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1990BA43      Nucl.Phys. A518, 767 (1990)

R.Barbera, A.Badala, A.Adorno, A.Bonasera, M.Di Toro, A.Palmeri, G.S.Pappalardo, G.Bizard, R.Bougault, D.Durand, A.Genoux-Lubain, J.L.Laville, F.Lefebvres, J.P.Patry, G.M.Jin, E.Rosato

Evidence of a Two-Source Emission for Light Charged Particle in Coincidence with Pions Produced in 16O + 27Al Collisions at 94 MeV/Nucleon

NUCLEAR REACTIONS 27Al(16O, π+X), (16O, π-X), E=1504 MeV; measured σ(Eπ, θ(X)) vs fragment velocity for light charged particle. Participant-spectator model.

doi: 10.1016/0375-9474(90)90190-W
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1990BA53      Nucl.Phys. A519, 231c (1990)

R.Barbera, A.Badala, A.Adorno, A.Bonasera, M.Di Toro, A.Palmeri, G.S.Pappalardo, F.Riggi, G.Russo, G.Bizard, D.Durand, J.L.Laville, G.M.Jin, E.Rosato

Subthreshold Production of Pions in Coincidence with Light Particles

NUCLEAR REACTIONS 27Al(16O, X), E=94 MeV/nucleon; measured (light charged particle)pion-coin, σ(θπ, Eπ); deduced pion emission mechanism.

doi: 10.1016/0375-9474(90)90630-5
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1990CA25      Z.Phys. A336, 387 (1990)

G.Cardella, M.Papa, G.Pappalardo, F.Rizzo, Q.Wang, A.De Rosa, E.Fioretto, G.Inglima, M.Romoli, M.Sandoli, R.Setola, L.Corradi, G.Montagnoli, D.R.Napoli, A.M.Stefanini

Interaction Times in the 19F + 63Cu Dissipative Heavy Ion Reaction

NUCLEAR REACTIONS 63Cu(19F, X), E=100-108 MeV; measured σ(fragment θ); deduced coherence energies, interaction times. Kun model, dissipative reactions.


1990DE14      Phys.Rev. C41, 2062 (1990)

A.De Rosa, E.Fioretto, G.Inglima, M.Romoli, M.Sandoli, R.Setola, G.Cardella, M.Papa, G.Pappalardo, F.Rizzo, Q.Wang, D.R.Napoli, F.Scarlassara, G.F.Segato, C.Signorini, A.M.Stefanini

Reaction Mechanisms and Their Interaction Time in Dissipative Heavy-Ion Collisions

NUCLEAR REACTIONS 63Cu(19F, X), E=100-108 MeV; analyzed σ(fragment θ); deduced reaction mechanisms role. Strutinsky model framework.

doi: 10.1103/PhysRevC.41.2062
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1990DU02      Nucl.Phys. A511, 442 (1990)

D.Durand, J.L.Laville, G.Bizard, R.Bougault, A.Genoux-Lubain, F.Lefebvres, J.P.Patry, A.Badala, R.Barbera, A.Palmeri, G.S.Pappalardo, A.Schillaci, G.M.Jin, E.Rosato

Light Fragment Emission Correlated with Large Transverse Momentum Protons in 94 MeV/u 16O Induced Reactions

NUCLEAR REACTIONS 27Al(16O, pX), E=94 MeV/nucleon; measured proton σ(E, θ), light particle multiplicities; deduced source size. Statistical model calculations.

doi: 10.1016/0375-9474(90)90169-M
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1989CA03      Z.Phys. A332, 195 (1989)

G.Cardella, M.Papa, G.Pappalardo, F.Rizzo, A.De Rosa, G.Inglima, M.Sandoli

Cross Section Coherence Energy and Interaction Time in Heavy Ion Dissipative Collisions

NUCLEAR REACTIONS 64Ni, 48Ti(28Si, X), E=130 MeV; calculated σ(θ), σ vs autocorrelation function.


1989DE20      Phys.Rev. C40, 627 (1989)

A.De Rosa, G.Inglima, E.Rosato, M.Sandoli, G.Cardella, M.Papa, G.Pappalardo, F.Rizzo, G.Fortuna, G.Montagnoli, A.M.Stefanini, A.Tivelli, C.Signorini

Angular Momentum Role in Cross-Section Energy Coherence of Heavy-Ion Dissipative Collisions

NUCLEAR REACTIONS 63Cu(19F, X), E=100-108 MeV; measured σ(θ) vs E for fragment Z=5-11; deduced coherence widths. Other data analyzed.

doi: 10.1103/PhysRevC.40.627
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1989LU01      Phys.Rev. C39, 911 (1989)

V.Lucherini, C.Guaraldo, E.De Sanctis, P.Levi Sandri, E.Polli, A.R.Reolon, A.S.Iljinov, S.Lo Nigro, S.Aiello, V.Bellini, V.Emma, C.Milone, G.S.Pappalardo, M.V.Mebel

Au Photofission Cross Section by Quasimonochromatic Photons in the Intermediate Energy Region

NUCLEAR REACTIONS 197Au(γ, F), E=100-300 MeV; measured fission yields; deduced fission σ(E), nuclear fissility. Monchromatic photons.

doi: 10.1103/PhysRevC.39.911
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetM0952.


1989PA10      Phys.Rev. C40, 1081 (1989)

A.Palmeri, S.Aiello, A.Badala, R.Barbera, G.S.Pappalardo, L.Bimbot, F.Reide, N.Willis, H.Oeschler

Charged Pions from the Isotopes 58,64Ni by 201 MeV Protons

NUCLEAR REACTIONS 58,64Ni(p, π+), (p, π-), E=201 MeV; measured σ(θ); deduced total pion production yields, target mass dependences.

doi: 10.1103/PhysRevC.40.1081
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0108.


1988BA21      Nucl.Phys. A482, 511c (1988)

A.Badala, R.Barbera, G.Bizard, J.L.Laville, A.Palmeri, G.S.Pappalardo

Semi Exclusive Pion Production by Heavy-Ions at Energy below 100 MeV/u

NUCLEAR REACTIONS 12C(12C, π+X), (12C, π-X), E=84 MeV/nucleon; 27Al(16O, π+X), (12C, π-X), E=94 MeV/nucleon; measured (fragment)(pion)-coin, σ(fragment θ) vs velocity.

doi: 10.1016/0375-9474(88)90607-0
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1988CA27      Nucl.Phys. A482, 235c (1988)

G.Cardella, M.Papa, G.Pappalardo, F.Rizzo, A.De Rosa, G.Inglima, M.Sandoli, G.Fortuna, G.Montagnoli, A.M.Stefanini, A.Tivelli, S.Beghini, C.Signorini

Experimental Indications of Selective Excitations in Dissipative Heavy Ion Collisions

NUCLEAR REACTIONS 64Ni, 48Ti(28Si, X), E=120-127 MeV; measured σ(θ) vs E; deduced fluctuations role.

doi: 10.1016/0375-9474(88)90587-8
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1988DE06      Phys.Rev. C37, 1042 (1988)

A.De Rosa, G.Inglima, M.Romano, V.Russo, M.Sandoli, G.Cardella, G.Pappalardo, F.Rizzo, G.Fortuna, A.M.Stefanini, S.Beghini, G.Montagnoli, C.Signorini

Interaction Time Evaluation in Dissipative Heavy Ion Reactions

NUCLEAR REACTIONS 48Ti(28Si, X), E=120-127 MeV; measured σ(fragment θ) vs E; deduced interaction time features.

doi: 10.1103/PhysRevC.37.1042
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1988SA31      Nuovo Cim. 99A, 875 (1988)

G.Sanouillet, M.Bolore, Y.Cassagnou, H.Dabrowski, J.M.Hisleur, J.Julien, R.Legrain, G.S.Pappalardo, L.Roussel, A.Badala, S.Lo Nigro, A.Palmeri, F.Saint Laurent

Inclusive (16O, π±) Reaction at 94 MeV/Nucleon

NUCLEAR REACTIONS 12C, Ag, 197Au(16O, π+X), (16O, π-X), E=94 MeV/nucleon; measured σ(θ(π), E(π)); deduced σ(θ), σ.

doi: 10.1007/BF02730613
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1987CA30      Phys.Rev. C36, 2403 (1987)

G.Cardella, A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, F.Rizzo, N.Alamanos, B.Berthier, N.Saunier

Interference Effects between 17O States Populated in the 13C(6Li, d)17O(*) → α + 13C Reaction

NUCLEAR REACTIONS 6Li(13C, dα), E=34 MeV; measured σ(θd, θα); deduced reaction mechanism. 17O deduced levels, J, π, interference effects. Magnetic spectrometer, enriched target.

doi: 10.1103/PhysRevC.36.2403
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1987GU17      Phys.Rev. C36, 1027 (1987)

C.Guaraldo, V.Lucherini, E.De Sanctis, P.Levi Sandri, E.Polli, A.R.Reolon, S.Lo Nigro, S.Aiello, V.Bellini, V.Emma, C.Milone, G.S.Pappalardo

Photoexcitation Mechanisms and Photofission Cross Section for Bi by 100-300 MeV Quasi-Monochromatic Photons

NUCLEAR REACTIONS 209Bi(γ, F), E=100-300 MeV; measured photon induced fission σ(E). 209Bi deduced fission probability vs excitation.

doi: 10.1103/PhysRevC.36.1027
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetM0789.


1987LO19      Nuovo Cim. 98A, 643 (1987)

S.Lo Nigro, S.Aiello, G.Lanzano, C.Milone, A.Pagano, A.Palmeri, G.S.Pappalardo, V.Lucherini, N.Bianchi, E.De Sanctis, C.Guaraldo, P.Levi Sandri, V.Muccifora, E.Polli, A.R.Reolon, P.Rossi

Fragment Mass and Kinetic-Energy Distributions for the Photofission of 238U with (100-300) MeV Bremsstrahlung

NUCLEAR REACTIONS 238U(γ, F), E=100-260 MeV bremsstrahlung; measured fission fragment yield vs mass; deduced symmetric to asymmetric fission yield ratios.


1987ST06      Phys.Lett. 185B, 15 (1987)

A.M.Stefanini, G.Montagnoli, G.Fortuna, R.Menegazzo, S.Beghini, C.Signorini, A.DeRosa, G.Inglima, M.Sandoli, F.Rizzo, G.Pappalardo, G.Cardella

Neutron and Proton Transfer in 32,36S + 58,64Ni around the Coulomb Barrier

NUCLEAR REACTIONS, ICPND 58,64Ni(32S, 32S), (32S, 32S'), (36S, 36S), (36S, 36S'), E=94-112 MeV; measured σ(θ), transfer σ; calculated inelastic, reaction σ, fusion σ(E). Enriched targets, tof ΔE-E telescope. Coupled-channels, DWBA calculations.

doi: 10.1016/0370-2693(87)91520-6
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1987TI04      Fizika(Zagreb) 19, Supplement 1, 39 (1987)

A.Tivelli, A.M.Stefanini, D.Bonamini, G.Montagnoli, G.Fortuna, Y.Nagashima, S.Beghini, C.Signorini, A.De Rosa, G.Inglima, M.Sandoli, G.Cardella, F.Rizzo, G.Pappalardo

Elastic Scattering of 32S + 58,64Ni around the Coulomb Barrier

NUCLEAR REACTIONS 58,64Ni(32S, 32S), E=82-150 MeV; measured σ(θ); deduced model parameters. Optical model.


1986MI25      Nucl.Phys. A459, 594 (1986)

B.Million, V.Bellini, L.Bimbot, M.Bolore, X.Charlot, J.Girard, J.M.Hisleur, J.C.Jourdain, J.Julien, A.Palmeri, G.S.Pappalardo, F.Reide, G.Sanouillet, N.Willis

Inclusive (3He, π±) Reactions at 283 MeV

NUCLEAR REACTIONS 12C, 27Al, 89Y, Pb(3He, π+), (3He, π-), E=283 MeV; measured σ(E(π), θ); deduced σ(θ), σ.

doi: 10.1016/0375-9474(86)90162-4
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1985BE16      Nuovo Cim. 85A, 75 (1985)

V.Bellini, V.Emma, S.Lo Nigro, C.Milone, G.S.Pappalardo, E.De Sanctis, P.Di Giacomo, C.Guaraldo, V.Lucherini, E.Polli, A.R.Reolon

Photofission Cross-Section for 238U by (120-280) MeV Quasi-Monochromatic Photons

NUCLEAR REACTIONS 238U(γ, F), E < 280 MeV; measured fission yields. Quasimonochromatic photon beam.

doi: 10.1007/BF02902391
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1985BI04      Nucl.Phys. A440, 636 (1985)

L.Bimbot, V.Bellini, M.Bolore, X.Charlot, C.Guet, J.M.Hisleur, J.C.Jourdain, J.Julien, P.Kristiansson, G.Lanzano, B.Million, A.Oskarsson, A.Palmeri, G.S.Pappalardo, J.Poitou, F.Reide, N.Willis

Inclusive (p, π±) Reactions at 201 and 180 MeV

NUCLEAR REACTIONS 12C, 89Y, Pb(p, π+), (p, π-), E=201, 180 MeV; measured reaction products; deduced σ(θ, E), σ(E), σ(θ), charged pion production σ.

doi: 10.1016/0375-9474(85)90398-7
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1985CU04      Nuovo Cim. 85A, 343 (1985)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, F.Rizzo, N.Saunier

Break-Up Mechanisms in the 12C(6Li, dα) Reaction at 34 MeV Incident Energy

NUCLEAR REACTIONS 12C(6Li, dα), E=34 MeV; measured σ(θα, Ed), dα(θ). 12C(6Li, 6Li), (6Li, 6Li'), E=34 MeV; measured σ(θ); deduced reaction mechanism. 6Li deduced elastic to inelastic breakup ratio.

doi: 10.1007/BF02902743
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1985DE36      Phys.Lett. 160B, 239 (1985)

A.De Rosa, G.Inglima, V.Russo, M.Sandoli, G.Fortuna, G.Montagnoli, C.Signorini, A.M.Stefanini, G.Cardella, G.Pappalardo, F.Rizzo

Fluctuations in the Excitation Functions of Dissipative Heavy Ion Collisions

NUCLEAR REACTIONS 60Ni(28Si, X), E=120-126.75 MeV; measured fragment production σ(θ) vs E for Z=10-16; deduced dinuclear intermediate state formation. Dissipative collisions.

doi: 10.1016/0370-2693(85)91318-8
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1984CA39      Lett.Nuovo Cim. 41, 429 (1984)

G.Cardella, A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, F.Rizzo, N.Saunier

Unexpected Behaviour of the Angular-Correlation Function between Deuterons and Alpha-Particles Emitted in the 13C(6Li, dα) Reaction at 34 MeV Incident Energy.

NUCLEAR REACTIONS 13C(6Li, d), E=34 MeV; measured σ(Ed), dα-coin, σ(θd, θα); deduced reaction mechanism. 17O levels deduced population, decay characteristics. DWBA analysis.

doi: 10.1007/BF02747149
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1984HE04      Z.Phys. A315, 243 (1984)

H.Heckwolf, E.Grosse, H.Dabrowski, O.Klepper, C.Michel, W.F.J.Muller, H.Noll, C.Brendel, W.Rosch, J.Julien, G.S.Pappalardo, G.Bizard, J.L.Laville, A.C.Mueller, J.Peter

Subthreshold Production of Neutral Pions with Ar Ions of 44 MeV/u

NUCLEAR REACTIONS 40Ca, Sn, U(40Ar, π0), E=44 MeV/nucleon; measured pion production σ(θ), σ(E(π)); deduced collision dynamics properties.

doi: 10.1007/BF01419385
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1984JU02      Phys.Lett. 142B, 340 (1984)

J.Julien, M.Bolore, X.Charlot, J.M.Hisleur, J.Martino, G.S.Pappalardo, L.Roussel, B.Saghai, G.Sanouillet, L.Bimbot, D.Lebrun, F.F.Guber, A.B.Kurepin, A.I.Reshetin

Evidence for a Resonant Structure in Inclusive Cu(p, π+)X Reactions between 300 and 400 MeV

NUCLEAR REACTIONS Cu(p, π+X), E=300-400 MeV; measured σ(E(π), θ(π)); deduced resonant structure.

doi: 10.1016/0370-2693(84)91336-4
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1983BE15      Lett.Nuovo Cim. 36, 587 (1983)

V.Bellini, V.Emma, S.Lo Nigro, C.Milone, G.S.Pappalardo, E.De Sanctis, P.Di Giacomo, C.Guaraldo, V.Lucherini, E.Polli, A.R.Reolon

Fission of Bi Induced by a Quasi-Monochromatic Photon Beam at Energies from 100 MeV to 280 MeV

NUCLEAR REACTIONS 209Bi(γ, F), E=100-280 MeV; measured fission fragment yields; deduced photofission σ(E). Quasimonochromatic beam.

doi: 10.1007/BF02747216
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1983CU02      Phys.Lett. 124B, 439 (1983)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

Evidence for 3p-2h Rotational Bands in 17O

NUCLEAR REACTIONS 14C(6Li, t), E=34 MeV; measured σ(Et), σ(θ). 17O levels deduced C2S, rotational band character, configuration. 16O(6Li, t), E=36 MeV; analyzed σ(θ).

doi: 10.1016/0370-2693(83)91546-0
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1983CU03      Lett.Nuovo Cim. 37, 193 (1983)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

States in 18O at High Excitation Energy

NUCLEAR REACTIONS 14C(6Li, d), E=34 MeV; measured σ(Ed), dα-coin, σ(θα, θd); deduced reaction mechanism. 18O deduced levels, J, π, rotational band configuration. Self-supporting 14C target, 12C impurity corrections.

doi: 10.1007/BF02751174
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1983CU04      Lett.Nuovo Cim. 38, 87 (1983)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

17O-17N Analog States via the 14C(6Li, t) and 14C(6Li, 3He) Reactions

NUCLEAR REACTIONS 14C(6Li, t), (6Li, 3He), E=34 MeV; measured σ(Et), σ(E(3He)), σ(θ). 17O, 17N deduced T=3/2 analog levels, relative spectroscopic factors. Hartree-Fock model, exact finite-range DWBA analysis.

doi: 10.1007/BF02815974
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1982CU01      Phys.Lett. 112B, 121 (1982)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

On the 18O Positive-Parity Rotational Band

NUCLEAR REACTIONS 14C(6Li, d), E=34 MeV; measured σ(Ed), dα-coin, dα(θ), σ(θ). 18O levels deduced J, π. Exact finite-range DWBA calculations.

doi: 10.1016/0370-2693(82)90310-0
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1982CU02      Lett.Nuovo Cim. 34, 229 (1982)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, F.Rizzo, N.Saunier, G.Baur, R.Shyam, F.Rosel, D.Trautmann

Inclusive Deuteron Spectra from the 6Li + 12C Collision at 34 MeV

NUCLEAR REACTIONS 12C(6Li, dX), E=34 MeV; measured σ(θ, Ed) inclusive; deduced optical model parameters. Zero-range DWBA, breakup, deuteron spectator model.

doi: 10.1007/BF02817116
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1982DE53      Nucl.Instrum.Methods 203, 227 (1982)

E.De Sanctis, P.Di Giacomo, S.Gentile, C.Guaraldo, V.Lucherini, E.Polli, A.R.Reolon, V.Bellini, S.Lo Nigro, G.S.Pappalardo

On Fission Experiments by Means of a Quasi-Monochromatic Photon Beam at the Frascati Linac

NUCLEAR REACTIONS 209Bi, 197Au(γ, F), E=100-300 MeV; calculated fission yields per equivalent quantum. 238U(γ, F), E=100-300 MeV; measured absolute fission yields. Monte Carlo techniques.

doi: 10.1016/0167-5087(82)90631-7
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1981CU02      Nucl.Phys. A355, 261 (1981)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier, B.T.Kim

Charge Exchange Reaction 14C(6Li, 6He)14N

NUCLEAR REACTIONS 14C(6Li, 6He), E=34, 62 MeV; measured σ(θ); deduced spin-isospin dependent effective interaction. One-step charge exchange DWBA analysis.

doi: 10.1016/0375-9474(81)90141-X
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1981CU07      Phys.Rev. C24, 476 (1981)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

18O States via the 14C(6Li, d)18O Reaction at 34 MeV Incident Energy

NUCLEAR REACTIONS 14C(6Li, d), E=34 MeV; measured σ(θ). 18O levels deduced J, π, Sα. Exact finite-range DWBA, Hauser-Feshbach analyses. ΔE-E counter telescope.

doi: 10.1103/PhysRevC.24.476
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1981CU11      Phys.Rev. C24, 2127 (1981)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

14C(6Li, t)17O Reaction at E(6Li) = 34 MeV

NUCLEAR REACTIONS 14C(6Li, t), E=34 MeV; measured σ(θ); deduced reaction mechanism. 17O levels deduced S. Exact finite-range DWBA, Hauser-Feshbach analysis.

doi: 10.1103/PhysRevC.24.2127
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1980BE31      Nuovo Cim. A55, 182 (1980)

V.Bellini, V.Emma, S.L.Nigro, C.Milone, G.S.Pappalardo, G.Bologna

Fission of 233U from 100 MeV to 1000 MeV by a Coherent Photon Beam

NUCLEAR REACTIONS, Fission 238U(γ, F), E=100-1000 MeV bremsstrahlung; measured σ(fission, E); deduced reaction mechanism, resonance effects.

doi: 10.1007/BF02899964
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1980CU03      Phys.Rev. C21, 952 (1980)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, F.Rizzo, N.Saunier

13C(6Li, t)16O Reaction in the 20-32 MeV Incident Energy Range

NUCLEAR REACTIONS 13C(6Li, t), E=20-32 MeV; measured σ(E, θ). 16O levels deduced S. Hauser-Feshbach, exact finite range DWBA analysis.

doi: 10.1103/PhysRevC.21.952
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1980CU08      Phys.Rev. C21, 2345 (1980)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

12C(6Li, d)16O → α + 12C Reaction Mechanism by Means of Angular Correlation Measurements

NUCLEAR REACTIONS 12C(6Li, d), E=34 MeV; measured αd(θ); deduced reaction mechanism. 16O levels deduced J, π, Γα/Γ, α-reduced width. Exact finite range DWBA, Hauser-Feshbach analyses.

doi: 10.1103/PhysRevC.21.2345
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1979BE45      Lett.Nuovo Cim. 26, 173 (1979)

V.Bellini, M.Di Toro, S.Lo Nigro, G.S.Pappalardo

Fission Induced by Linearly Polarized Photons on Even-Even Nuclei

NUCLEAR REACTIONS 238U(γ, F), E=5.58, 8.99 MeV; calculated fragment σ(θ). Monochromatic, linearly polarized photons.

doi: 10.1007/BF02746619
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1978BE44      Lett.Nuovo Cim. 22, 539 (1978)

V.Bellini, V.Emma, S.Lo Nigro, C.Milone, G.S.Pappalardo

Fission Fragment Spectra Measured by Means of Glass Detectors

NUCLEAR REACTIONS 238U(n, F), E=1.8, 5.2, 12.7, 14.5, 16.8 MeV; measured fragment energy. Glass detectors.

doi: 10.1007/BF02789524
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1978BE62      Nuovo Cim. 47A, 529 (1978)

V.Bellini, V.Emma, A.S.Figuera, S.Lo Nigro, C.Milone, G.S.Pappalardo, G.Bologna

Fission Cross-Section of Re, W and Ta by a Coherent Photon Beam from 1000 MeV Electrons

NUCLEAR REACTIONS Re, W, Ta(γ, F), E=220-550 MeV bremsstrahlung; measured σ(E). Photomesonic model with energy-dependent nuclear fissility.

doi: 10.1007/BF02896241
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1978CU03      Phys.Rev. C18, 856 (1978)

A.Cunsolo, A.Foti, G.Pappalardo, G.Raciti, N.Saunier

12C(6Li, d)16O Reaction in the 20-34 MeV Incident Energy Range

NUCLEAR REACTIONS 12C(6Li, d), E=20, 34 MeV; measured σ(Ed, θ). 16O levels deduced Sα. Hauser-Feshbach, DWBA analysis.

doi: 10.1103/PhysRevC.18.856
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1561.


1978CU07      Lett.Nuovo Cim. 23, 371 (1978)

A.Cunsolo, A.Foti, G.Imme, G.Pappalardo, G.Raciti, N.Saunier

Configuration Mixing in the 12C(6Li, d)16O Reaction

NUCLEAR REACTIONS 12C(6Li, d), E=28 MeV; calculated σ(θ) using configuration-mixed 16O wave functions in exact finite-range-DWBA, including Hauser-Feshbach contributions.

doi: 10.1007/BF02776251
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1977BE47      Lett.Nuovo Cim. 19, 611 (1977)

V.Bellini, S.Lo Nigro, G.S.Pappalardo

Energy Dependence of the Nuclear Fissility for Bi, Pb, Au and Pt at Photon Energies below 1000 MeV

NUCLEAR REACTIONS Bi, Pb, Au, Pt(γ, F), E < 1 GeV; calculated nuclear fissility.

doi: 10.1007/BF02745028
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1977CU03      Nuovo Cim. 40A, 293 (1977)

A.Cunsolo, A.Foti, G.Pappalardo, G.Raciti, N.Saunier, E.F.da Silveira

Study of Some 16O States at High Excitation Energy

NUCLEAR REACTIONS 12C(6Li, d), E=34 MeV; measured particle-particle (θ); deduced reaction mechanism. 16O levels deduced J, π.

doi: 10.1007/BF02776865
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1976BO47      Nuovo Cim. 35A, 91 (1976)

G.Bologna, V.Bellini, V.Emma, A.S.Figuera, S.Lo Nigro, C.Milone, G.S.Pappalardo

Fission of Bi, Pb, Au and Pt Induced by a Coherent Photon Beam from 1000 MeV Electrons

NUCLEAR REACTIONS Bi, Pb, Au, Pt(γ, F), E=220-500 MeV; measured σ(E).

doi: 10.1007/BF02730063
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1975AV02      J.Phys.(Paris), Lett. 36, L-229 (1975)

M.Avril, M.Lepareux, N.Saunier, A.Foti, G.Pappalardo, A.Strazzeri

Angular Correlation Study of Some Highly Excited Levels of 16O

NUCLEAR REACTIONS 12C(6Li, dα), E=32 MeV; measured dα(θ). 16O levels deduced J, π.

doi: 10.1051/jphyslet:019750036010022900
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1975CA24      Nuovo Cim. 28A, 12 (1975)

S.Cavallaro, G.Corleo, A.Cunsolo, A.Foti, S.Giambruno, M.Di Toro, G.Pappalardo

The 40Ar(d, p)41Ar Reaction at Deuteron Energies below the Coulomb Barrier

NUCLEAR REACTIONS 40Ar(d, d), E=1.5-2.3 MeV; measured σ(E, θ). 40Ar(d, p), E=1.5-2.5 MeV; measured σ(E, Ep, θ). 41Ar levels deduced S.

doi: 10.1007/BF02730392
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1973LE23      Lett.Nuovo Cim. 8, 725 (1973)

M.Lepareux, N.Saunier, C.Gerardin, M.Wery, A.Foti, G.Pappalardo, A.Strazzeri

States at High Excitation Energies in 24Mg Obtained from Li-Induced Reactions on 20Ne

NUCLEAR REACTIONS 20Ne(6Li, d), (7Li, t); measured σ(Ed, Et). 24Mg deduced levels.

doi: 10.1007/BF02725355
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1972BA52      Nucl.Phys. A189, 353 (1972)

G.Bassani, N.Saunier, B.M.Traore, J.Raynal, A.Foti, G.Pappalardo

Optical-Model Analysis of 6Li Elastic Scattering

NUCLEAR REACTIONS 11B, 12C, 13C(6Li, 6Li), E=28 MeV; measured σ(θ); deduced optical potentials. Self-supporting enriched 11B, 13C targets. Natural 12C target.

doi: 10.1016/0375-9474(72)90300-4
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1971BA31      Phys.Lett. 34B, 612 (1971)

G.Bassani, G.Pappalardo, N.Saunier, B.M.Traore

The 16O First Rotational Band from the 12C(6Li, d)16O Reaction

NUCLEAR REACTIONS 12C(6Li, d), E=20-32 MeV; measured σ(Ed, θ). 16O deduced levels, J, π, level-width, rotational band structure.

doi: 10.1016/0370-2693(71)90152-3
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