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NSR database version of April 24, 2024.

Search: Author = D.J.Marin-Lambarri

Found 16 matches.

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2023BR04      Phys.Rev. C 107, 055802 (2023)

J.W.Brummer, P.Adsley, T.Rauscher, F.D.Smit, C.P.Brits, M.Kohne, N.A.Khumalo, K.C.W.Li, D.J.Marin-Lambarri, N.J.Mukwevho, F.Nemulodi, R.Neveling, P.Papka, L.Pellegri, V.Pesudo, B.M.Rebeiro, G.F.Steyn, W.Yahia-Cherif

Proton decays from α-unbound states in 22Mg and the 18Ne(α, p0)21Na cross section

NUCLEAR REACTIONS 24Mg(p, t)22Mg, E=100 MeV; measured reaction products, triton spectra, Ep, Ip. 22Mg; deduced levels, branching ratios for proton decay of the excited states. 18Ne(α, p)21Na, E(cm)=1-3 MeV; calculated exclusive σ(E) to the ground state with SMARAGD code using deduced p0 width. Comparison to TALYS, NON-SMOKER and SMARAGD calculations and other experimental results. K600 magnetic spectrometer and CAKE (Coincidence Array for K600 Experiments) array 5 double-sided silicon strip detectors at Separated-Sector Cyclotron (iThemba LABS).

doi: 10.1103/PhysRevC.107.055802
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Data from this article have been entered in the XUNDL database. For more information, click here.


2023MA46      Universe 9, 438 (2023)

J.Mas Ruiz, K.G.Zayas-Bazan, P.G.Zayas-Bazan, A.Huerta, J.Sastre-Hernandez, D.J.Marin-Lambarri, Lui.Acosta, E.Andrade, C.Solis, E.R.Chavez Lomeli

Probing the Elastic Scattering Differential Cross Section for Al + p at Backward Angles in a Low Energy Regime

NUCLEAR REACTIONS 27Al(p, p), E=0.8-2.1 MeV; measured reaction products; deduced σ(θ). Comparison with optical model calculations. The ion beam analysis of materials (IBA), IBANDL database. The 1 MV tandem accelerator facility model 4110Bo of the Accelerator Mass Spectrometry Laboratory (LEMA) located at the Physics Institute of the National Autonomous University of Mexico (IFUNAM).

doi: 10.3390/universe9100438
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2022AD10      Phys.Rev.Lett. 129, 102701 (2022)

P.Adsley, M.Heine, D.G.Jenkins, S.Courtin, R.Neveling, J.W.Brummer, L.M.Donaldson, N.Y.Kheswa, K.C.W.Li, D.J.Marin-Lambarri, P.Z.Mabika, P.Papka, L.Pellegri, V.Pesudo, B.Rebeiro, F.D.Smit, W.Yahia-Cherif

Extending the Hoyle-State Paradigm to 12C+12C Fusion

NUCLEAR REACTIONS 24Mg(α, α'), E=200 MeV; measured reaction products; deduced excitation-energy spectra, J, π, properties of 0+ states, estimates of 12C+12C fusion reaction rates. The Separated-Sector Cyclotron at iThemba LABS, Cape Town.

doi: 10.1103/PhysRevLett.129.102701
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Data from this article have been entered in the XUNDL database. For more information, click here.


2022CH34      Nucl.Instrum.Methods Phys.Res. B526, 77 (2022)

E.Chavez, V.Araujo-Escalona, J.Mas-Ruiz, L.Acosta, E.Andrade, L.Barron-Palos, R.J.R.Gleason, A.Huerta, M.Rodriguez-Ceja, D.J.Marin-Lambarri, C.G.Mendez, S.Padilla, C.Solis, A.O.Valdez-Guerrero

Accelerator Mass Spectrometry, an ultrasensitive tool to measure cross sections for stellar nucleosynthesis

NUCLEAR REACTIONS 28Si(d, α), E=1-5 MeV; measured reaction products. 26Al, 10B, 14C; deduced the activation-AMS method. 5.5 MV CN-Van de Graaff accelerator at IFUNAM, the EN-Tandem accelerator at ININ.

doi: 10.1016/j.nimb.2022.06.016
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2022OL03      Phys.Rev. C 105, 054319 (2022)

S.D.Olorunfunmi, R.Neveling, J.Carter, P.von Neumann-Cosel, I.T.Usman, P.Adsley, A.Bahini, L.P.L.Baloyi, J.W.Brummer, L.M.Donaldson, H.Jivan, N.Y.Kheswa, K.C.W.Li, D.J.Marin-Lambarri, P.T.Molema, C.S.Moodley, G.G.O'Neill, P.Papka, L.Pellegri, V.Pesudo, E.Sideras-Haddad, F.D.Smit, G.F.Steyn, A.A.Avaa, F.Diel, F.Dunkel, P.Jones, V.Karayonchev

Evolution of the isoscalar giant monopole resonance in the Ca isotope chain

NUCLEAR REACTIONS Ca, 42,44,48Ca(α, α'), E=196 MeV; measured Eα, Iα; deduced σ(θ), isoscalar giant monopole resonance strength distribution in the 9.5-25.5 MeV range, nucleus incompressibility KA. Analysis with difference-of-spectra (DoS) technique using measurements at 2 different angular covege settings of the spectrometer. Comparison to previous experimental results. K600 magnetic spectrometer at iThemba LABS.

doi: 10.1103/PhysRevC.105.054319
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD1023.


2021AD09      Phys.Rev. C 103, 044315 (2021)

P.Adsley, V.O.Nesterenko, M.Kimura, L.M.Donaldson, R.Neveling, J.W.Brummer, D.G.Jenkins, N.Y.Kheswa, J.Kvasil, K.C.W.Li, D.J.Marin-Lambarri, Z.Mabika, P.Papka, L.Pellegri, V.Pesudo, B.Rebeiro, P.-G.Reinhard, F.D.Smit, W.Yahia-Cherif

Isoscalar monopole and dipole transitions in 24Mg, 26Mg, and 28Si

NUCLEAR REACTIONS 24,26Mg, 28Si(α, α'), E=200 MeV; measured E(α), I(α), differential σ(θ) using K600 magnetic spectrometer for momentum analysis of α particles, and two multiwire drift chambers and two plastic scintillators at the iThemba LABS accelerator facility. 24,26Mg, 28Si; deduced levels, J, π, deformation parameters, percentage of the energy weighted sum rule (EWSR) for a level, B(E1), strength distributions for isoscalar dipole (IS1) and isoscalar monopole transitions (IS0), configurations. Comparison with Skyrme quasiparticle random-phase approximation (QRPA) and antisymmetrized molecular dynamics+generator coordinate method (AMD+GCM) calculations, and with experimental data in the ENSDF database.

doi: 10.1103/PhysRevC.103.044315
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD1003. Data from this article have been entered in the XUNDL database. For more information, click here.


2021CA27      Phys.Rev. C 104, 064315 (2021)

G.Cardella, F.Favela, N.S.Martorana, L.Acosta, A.Camaiani, E.De Filippo, N.Gelli, E.Geraci, B.Gnoffo, C.Guazzoni, G.Imme, D.J.Marin-Lambarri, G.Lanzalone, I.Lombardo, L.Lo Monaco, C.Maiolino, A.Nannini, A.Pagano, E.V.Pagano, M.Papa, S.Pirrone, G.Politi, E.Pollacco, L.Quattrocchi, F.Risitano, F.Rizzo, P.Russotto, V.L.Sicari, D.Santonocito, A.Trifiro, M.Trimarchi

Investigating γ-ray decay of excited 12C levels with a multifold coincidence analysis

NUCLEAR REACTIONS 12C(p, p'), E=24 MeV; 12C(α, α'), E=64 MeV; measured E(p), I(p), E(α), I(α), recoiling 12C, Eγ, Iγ, pγ- and αγ-coin, (particle)γ(θ) using 4π CHIMERA multidetector of 1192 Si-CsI(Tl) telescopes to detect charged particles and γ rays at INFN-LNS-Catania. 12C; deduced levels, Hoyle state, decay probabilities, 3-α decay channel, 2γ-ray decay probability yield of the 9.64-MeV level in 12C, small γ-ray decay branches by using the complete redundant measurement (CRM) method. Comparison with previous experimental results.

doi: 10.1103/PhysRevC.104.064315
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Data from this article have been entered in the XUNDL database. For more information, click here.


2021KA45      Phys.Rev. C 104, L061303 (2021)

M.Kamil, S.Triambak, A.Magilligan, A.Garcia, B.A.Brown, P.Adsley, V.Bildstein, C.Burbadge, A.Diaz Varela, T.Faestermann, P.E.Garrett, R.Hertenberger, N.Y.Kheswa, K.G.Leach, R.Lindsay, D.J.Marin-Lambarri, F.Ghazi Moradi, N.J.Mukwevho, R.Neveling, J.C.Nzobadila Ondze, P.Papka, L.Pellegri, V.Pesudo, B.M.Rebeiro, M.Scheck, F.D.Smit, H.-F.Wirth

Isospin mixing and the cubic isobaric multiplet mass equation in the lowest T=2, A=32 quintet

ATOMIC MASSES 32Ar, 32Cl, 32S, 32P, 32Si; analyzed experimental masses by a cubic fit to the isobaric multiplet mass equation (IMME) for the lowest isospin T=2 quintet in A=32 nuclei; investigated isospin mixing by combining high-resolution experimental data for proton spectrum from 32Ar β-delayed proton decay, and from triton spectrum in 32S(3He, t) reaction with the state-of-the-art shell-model calculations; evaluated isospin mixing matrix elements; extracted cubic and quartic coefficients of the IMME; deduced that isospin mixing with nonanalog T=1 states contributes to the IMME breakdown. 32Ar; analyzed experimental β-delayed proton spectrum by R-matrix fit; calculated proton emission amplitudes from states in 32Cl.

doi: 10.1103/PhysRevC.104.L061303
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2020MA53      Phys.Rev. C 102, 044601 (2020)

D.J.Marin-Lambarri, J.Garcia-Ramirez, E.Sanchez-Zuniga, S.Padilla, L.Acosta, E.Chavez, H.S.Cruz-Galindo, A.Huerta, G.Mendez, R.Raya-Arredondo, M.Rodriguez-Ceja, C.Solis, L.Barron-Palos

Measurement of the thermal neutron capture cross section by 9Be using the neutron flux from a nuclear research reactor and the AMS technique

NUCLEAR REACTIONS 9Be, 13C(n, γ), 14N(n, p)14C, E=thermal neutrons from TRIGA reactor at ININ-Mexico; measured isotopic concentrations of the reaction products by AMS technique at IF-UNAM-Mexico; deduced capture cross sections. Comparison with previous experimental results and data in evaluations.

doi: 10.1103/PhysRevC.102.044601
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset31830.


2020MI08      Nucl.Instrum.Methods Phys.Res. B477, 23 (2020)

J.Miranda, D.L.Serrano, J.C.Pineda, D.J.Marin-Lambarri, L.Acosta, J.A.Mendoza-Flores, S.Reynoso-Cruces, E.Chavez

Total L X-ray production cross sections of Sr, Y, Zr, Nb, and Mo induced by impact of 1.335 MeV to 1.835 MeV protons

NUCLEAR REACTIONS Sr, 89Y, Zr, 93Nb, Mo(p, X), E=1.335-1.835 MeV; measured reaction products, X-rays; deduced σ.

doi: 10.1016/j.nimb.2019.06.046
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2020PA31      Phys.Rev. C 102, 031601 (2020)

A.Pakou, L.Acosta, P.D.O'Malley, S.Aguilar, E.F.Aguilera, M.Baines, D.Bardayan, F.D.Becchetti, Ch.Boomershine, M.Brodeur, F.Cappuzzello, S.Carmichael, L.Caves, E.Chavez, C.Flores-Vazquez, A.Gula, J.J.Kolata, B.Liu, D.J.Marin-Lambarri, F.F.Morales, K.Rusek, A.M.Sanchez-Benitez, O.Sgouros, V.R.Sharma, V.Soukeras, G.Souliotis

Dominance of direct reaction channels at deep sub-barrier energies for weakly bound nuclei on heavy targets: The case 8B + 208Pb

NUCLEAR REACTIONS 208Pb(8B, 7Be), E=30 MeV, [secondary 8B beam from 3He(6Li, X)7Li/7Be/8B reaction using TwinSol facility at the University of Notre Dame FM tandem accelerator]; measured reaction products and elastically scattered particles, differential σ(θ) using Si telescopes, time-of-flight ΔE-E spectra; deduced direct to total reaction cross section, and compared with previous experimental σ ratios for 209Bi+6He, 58Ni+8B, and 28Si+7Be reactions, breakup cross section for the 208Pb+8B system at deep sub-barrier energies. Comparison with CDCC calculations, with Coulomb plus nuclear potentials, and Coulomb potentials only.

doi: 10.1103/PhysRevC.102.031601
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2581.


2018MU16      Phys.Rev. C 98, 051302 (2018)

N.J.Mukwevho, B.M.Rebeiro, D.J.Marin-Lambarri, S.Triambak, P.Adsley, N.Y.Kheswa, R.Neveling, L.Pellegri, V.Pesudo, F.D.Smit, E.H.Akakpo, J.W.Brummer, S.Jongile, M.Kamil, P.Z.Mabika, F.Nemulodi, J.N.Orce, P.Papka, G.F.Steyn, W.Yahia-Cherif

Second T=3/2 state in 9B and the isobaric multiplet mass equation

NUCLEAR REACTIONS 9Be(3He, t), (3He, d), E=50.61 MeV pulsed beam; measured E(t), I(t), E(d), I(d), and time-of-flight using the K600 magnetic spectrometer with multiwire drift chamber and plastic scintillator for particle identification at the cyclotron facility of iThemba LABS. 9B; deduced levels, J, π, isospin, energy of the second T=3/2 state. Comparison with previous experimental data. Discussed implications for the cubic isobaric multiplet mass equation (IMME) for the A=9 system.

doi: 10.1103/PhysRevC.98.051302
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Data from this article have been entered in the XUNDL database. For more information, click here.


2017AD07      Phys.Rev. C 95, 024319 (2017)

P.Adsley, D.G.Jenkins, J.Cseh, S.S.Dimitrova, J.W.Brummer, K.C.W.Li, D.J.Marin-Lambarri, K.Lukyanov, N.Y.Kheswa, R.Neveling, P.Papka, L.Pellegri, V.Pesudo, L.C.Pool, G.Riczu, F.D.Smit, J.J.van Zyl, E.Zemlyanaya

α clustering in 28Si probed through the identification of high-lying 0+ states

NUCLEAR REACTIONS 28Si(α, α'), E=200 MeV; measured scattered particles, σ(θ) using K600 magnetic spectrometer at iThemba LABS, natural Si target. 28Si; deduced levels, L-transfers, J, π, high-lying 0+ states. Comparison with multichannel dynamical symmetry (MUSY) calculations.

doi: 10.1103/PhysRevC.95.024319
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0836. Data from this article have been entered in the XUNDL database. For more information, click here.


2017AD34      Phys.Rev. C 96, 055802 (2017)

P.Adsley, J.W.Brummer, K.C.W.Li, D.J.Marin-Lambarri, N.Y.Kheswa, L.M.Donaldson, R.Neveling, P.Papka, L.Pellegri, V.Pesudo, L.C.Pool, F.D.Smit, J.J.van Zyl

Re-examining the 26Mg(α, α')26Mg reaction: Probing astrophysically important states in 26Mg

NUCLEAR REACTIONS 26Mg(α, α'), E=200 MeV; measured Eα, Iα, differential σ(θ) using K600 magnetic spectrometer at iThemba LABS. 26Mg; deduced levels, α-resonances, L-transfer, J, π, new 0+ at 10.824 MeV. DWBA analysis of σ(θ) data. Comparison with previous experimental data. Implications for astrophysical reaction rate for 22Ne(α, γ)26Mg reaction.

doi: 10.1103/PhysRevC.96.055802
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0903. Data from this article have been entered in the XUNDL database. For more information, click here.


2015WH01      Phys.Rev. C 91, 024308 (2015)

C.Wheldon, Tz.Kokalova, M.Freer, J.Walshe, R.Hertenberger, H.-F.Wirth, N.I.Ashwood, M.Barr, N.Curtis, Th.Faestermann, R.Lutter, J.D.Malcolm, D.J.Marin-Lambarri

Spectroscopy of 9B via high-resolution ejectile-tagged recoil break-up

NUCLEAR REACTIONS 9Be(3He, t)9B*, E=33 MeV; measured particle spectra, (9B breakup products)(triton)-coin using Munich-Q3D spectrograph at the MLL tandem Van de Graaff accelerator facility. 9B; deduced levels, J, π, total and partial widths for 8Be+p and 5Li+α channels. Comparison with earlier experimental results.

doi: 10.1103/PhysRevC.91.024308
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Data from this article have been entered in the XUNDL database. For more information, click here.


2014MA37      Phys.Rev.Lett. 113, 012502 (2014)

D.J.Marin-Lambarri, R.Bijker, M.Freer, M.Gai, Tz.Kokalova, D.J.Parker, C.Wheldon

Evidence for Triangular D3h Symmetry in 12C

NUCLEAR REACTIONS 12C(α, 3α), E=40 MeV; measured reaction products, Eα, Iα; deduced yields, level scheme, J, π, high-spin states. Comparison with available data.

doi: 10.1103/PhysRevLett.113.012502
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Data from this article have been entered in the XUNDL database. For more information, click here.


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Note: The following list of authors and aliases matches the search parameter D.J.Marin-Lambarri: , D.J.MARIN-LAMBARRI