NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = E.Bauer Found 40 matches. 2023BA12 Phys.Rev. C 107, 065804 (2023) E.Bauer, J.Torres Patino, O.G.Benvenuto Neutrino mean free path for proto--neutron star matter within the Skyrme model
doi: 10.1103/PhysRevC.107.065804
2023BE12 Eur.Phys.J. A 59, 159 (2023) O.G.Benvenuto, E.Bauer, I.Vidana Hot and highly magnetized neutron star matter properties with Skyrme interactions
doi: 10.1140/epja/s10050-023-01070-z
2021BE22 Phys.Rev. C 104, 025801 (2021) Contributions from Λ hyperons to nucleosynthesis in kilonovae NUCLEAR STRUCTURE A=15-240; calculated abundances for the most abundant isotopes resulting from the expansion of matter resulting from the collision of neutron stars or neutron start and a black hole using a network of 3298 isotopes, and weak decays of Λ hyperons, applied to nucleosynthesis in kilonovae, using equation of state (EOS) with the presence of Λ hyperons.
doi: 10.1103/PhysRevC.104.025801
2020BA31 Phys.Rev. C 101, 065806 (2020) Asymmetry of the neutrino mean free path in partially spin polarized neutron matter within the Skyrme model NUCLEAR REACTIONS 1n(ν, e-p), (ν, ν'), E < 45 MeV/c; calculated neutrino mean free path for absorption and scattering channels as a function of the density of polarized hot neutron matter under a strong magnetic field. Equation of State EoS using the non-relativistic Hartree-Fock model with an LNS Skyrme interaction.
doi: 10.1103/PhysRevC.101.065806
2019TO06 Phys.Rev. C 99, 045808 (2019) J.Torres Patino, E.Bauer, I.Vidana Asymmetry of the neutrino mean free path in hot neutron matter under strong magnetic fields
doi: 10.1103/PhysRevC.99.045808
2017BA41 Phys.Rev. C 96, 044303 (2017) E.Bauer, G.Garbarino, C.A.Rodriguez Pena Nonmesonic weak decay of Λ hypernuclei: The ΛN- ΣN coupling NUCLEAR STRUCTURE 12C, 28Si, 56Fe, 208Pb; calculated rates for neutron- and proton-induced weak decays, Γn, γp for hypernuclei, and compared with KEK-E508 and FINUDA experimental data, parity-violating (PV) and parity-conserving (PC) contributions of ΛN-ΣN coupling to neutron- and proton-induced weak decay rates. Microscopic diagrammatic approach extended to include ΛN-ΣN strong interaction coupling with one-meson-exchange potentials.
doi: 10.1103/PhysRevC.96.044303
2015AG05 J.Phys.(London) G42, 105101 (2015) Coexistence of phases in asymmetric nuclear matter under strong magnetic fields
doi: 10.1088/0954-3899/42/10/105101
2015BA29 Phys.Rev. C 92, 014301 (2015) E.Bauer, G.Garbarino, C.A.Rodriguez Pena Nonmesonic weak decay of double-Λ hypernuclei: A microscopic approach NUCLEAR STRUCTURE 6He, 10Be, 13B; calculated widths for different weak decay channels of double-Λ hypernuclei. Microscopic diagrammatic approach. Comparison with other theoretical calculations.
doi: 10.1103/PhysRevC.92.014301
2014AG03 Phys.Rev. C 89, 035809 (2014) Neutron matter under strong magnetic fields: A comparison of models
doi: 10.1103/PhysRevC.89.035809
2013BA45 Nucl.Phys. A914, 204c (2013) Microscopic model to nucleon spectra in hypernuclear non-mesonic weak decay NUCLEAR STRUCTURE 12C hypernucleus; calculated nn and np momentum correlation spectra using consistent microscopic model. Compared with published data.
doi: 10.1016/j.nuclphysa.2012.12.127
2012BA06 Phys.Rev. C 85, 024321 (2012) E.Bauer, G.Garbarino, A.Parreno, A.Ramos Microscopic approach to the proton asymmetry in the nonmesonic weak decay of Λ hypernuclei NUCLEAR STRUCTURE 12C; calculated intrinsic asymmetry parameter, nonmesonic decay widths for polarized hypernucleus. Microscopic diagrammatic nuclear matter formalism. Comparison with experimental data from KEK.
doi: 10.1103/PhysRevC.85.024321
2010BA13 Nucl.Phys. A836, 199 (2010) E.Bauer, G.Garbarino, A.Parreno, A.Ramos Single and double coincidence nucleon spectra in the weak decay of Λ-hypernuclei NUCLEAR STRUCTURE 12C; calculated hypernucleus non-mesonic weak decay widths and associated decay observables using a nuclear matter model with local density approximation. Comparison with data.
doi: 10.1016/j.nuclphysa.2010.01.246
2010BA20 Phys.Rev. C 81, 064315 (2010) Role of ground-state correlations in hypernuclear nonmesonic weak decay NUCLEAR STRUCTURE 11B, 12C, 27Al, 27Al, 28Si, 40Ca, 56Fe, 89Y, 139La, 208Pb; calculated contribution of ground-state correlations (GSC) to the hypernuclear decay, and decay rates of hypernuclei within a nuclear-matter formalism. Comparison with experimental data.
doi: 10.1103/PhysRevC.81.064315
2010BA35 Nucl.Phys. A834, 599c (2010) E.Bauer, A.P.Galeao, M.S.Hussein, F.Krmpotic Weak nonmesonic decay spectra of hypernuclei RADIOACTIVITY 4,5He, 12C, 16O, 28Si(p); calculated energy spectra, p-spectra for non-mesonic weak decay of hypernuclei. Comparison with data.
doi: 10.1016/j.nuclphysa.2010.01.103
2010BA52 Nucl.Phys. A835, 430c (2010) A Theoretical Determination of Nnn/Nnp in Hypernuclear Non-Mesonic Weak Decay NUCLEAR STRUCTURE 12C; calculated hypernucleus nn and np pair ratios, energy spectra, decay widths. Considered final state interactions.
doi: 10.1016/j.nuclphysa.2010.01.236
2009BA03 Nucl.Phys. A818, 174 (2009) Ground state normalization in the nonmesonic weak decay of 12ΛC hypernucleus within a nuclear matter formalism NUCLEAR STRUCTURE 12C; calculated hypernucleus non-mesonic weak decay widths using a nuclear matter model and including ground state correlations. Comparison with data.
doi: 10.1016/j.nuclphysa.2008.12.008
2009BA16 Phys.Lett. B 674, 103 (2009) E.Bauer, A.P.Galeao, M.S.Hussein, F.Krmpotic, J.D.Parker Nonmesonic weak decay spectra of 4ΛHe NUCLEAR STRUCTURE 4H, 4,5He; calculated hypernucleus non-mesonic weak decay widths, particle energy spectra and related features based on an independent-particle shell model. Comparison with data and other models.
doi: 10.1016/j.physletb.2009.01.072
2009BA38 Nucl.Phys. A828, 29 (2009) Exchange terms in the two-nucleon induced non-mesonic weak decay of Λ-hypernuclei NUCLEAR STRUCTURE 12C; calculated hypernucleus two-nucleon induced non-mesonic weak decay widths using a nuclear matter model including Pauli exchange. Comparison with data.
doi: 10.1016/j.nuclphysa.2009.06.022
2007BA02 Nucl.Phys. A781, 424 (2007) Non-mesonic weak decay of Λ hypernuclei within a nuclear matter framework NUCLEAR STRUCTURE 12C; calculated hypernucleus non-mesonic weak decay widths, related features.
doi: 10.1016/j.nuclphysa.2006.11.049
2007BA68 Nucl.Phys. A796, 11 (2007) Quantum interference terms in non-mesonic weak decay of L-hypernuclei within an RPA formalism NUCLEAR STRUCTURE 12C; calculated hypernucleus non-mesonic weak decay widths and decay-particle spectra with RPA and final state interactions. Comparison with data.
doi: 10.1016/j.nuclphysa.2007.09.003
2005BA39 J.Phys.(London) G31, 471 (2005) The longitudinal and transverse nuclear responses within the RPA framework NUCLEAR REACTIONS 40Ca(e, e'X), E not given; calculated longitudinal and transverse response functions. RPA approach, comparison with data.
doi: 10.1088/0954-3899/31/5/016
2004BA51 Nucl.Phys. A739, 109 (2004) Two nucleon induced hypernuclear weak decay within a nuclear matter formalism NUCLEAR STRUCTURE 12C; calculated hypernucleus decay widths.
doi: 10.1016/j.nuclphysa.2004.03.077
2003BA33 Nucl.Phys. A717, 217 (2003); Erratum Nucl.Phys. A727, 467 (2003) Nonmesonic weak decay of Λ hypernuclei within a nuclear matter formalism NUCLEAR STRUCTURE 12C; calculated hypernucleus nonmesonic weak decay widths. Nuclear matter formalism.
doi: 10.1016/S0375-9474(03)00641-9
2003BA72 Nucl.Phys. A725, 149 (2003) The role of the Δ(1232) on the longitudinal response in the inclusive electron scattering reaction NUCLEAR REACTIONS 40Ca(e, e'X), E not given; calculated longitudinal response functions vs momentum transfer; deduced role of Δ resonance. Second RPA formalism, comparison with data.
doi: 10.1016/S0375-9474(03)01577-X
2001BA68 J.Phys.(London) G27, 1813 (2001) RPA Quasi-Elastic Responses in Infinite and Finite Nuclear Systems NUCLEAR STRUCTURE 12C, 40Ca; calculated quasi-elastic response functions. Ring approximation, RPA.
doi: 10.1088/0954-3899/27/8/311
2000BA11 J.Phys.(London) G26, 145 (2000) Continuum Second Random Phase Approximation Method Applied to the (e, e') Transverse Structure Function
doi: 10.1088/0954-3899/26/2/304
2000BA22 Phys.Rev. C61, 044307 (2000) Meson-Exchange Currents in an Extended Random Phase Approximation Theory Applied to Quasielastic Electron Scattering
doi: 10.1103/PhysRevC.61.044307
1999BA33 Phys.Rev. C59, 2603 (1999) Quasielastic Electron Scattering from Nuclei: Random-phase vs ring approximations NUCLEAR REACTIONS 40Ca(e, e'), E not given; calculated transverse response vs momentum transfer; deduced role of RPA exchange terms.
doi: 10.1103/PhysRevC.59.2603
1998BA18 Phys.Rev. C57, 1681 (1998) Effective Interaction in Quasielastic Electron Scattering Calculations NUCLEAR REACTIONS 40Ca(e, e'), E not given; calculated transverse response functions; deduced effective interaction role.
doi: 10.1103/PhysRevC.57.1681
1998BA43 Nucl.Phys. A637, 243 (1998) On the Role of the Δ(1232) on the Transverse Nuclear Response in the (e, e') Reaction NUCLEAR REACTIONS 40Ca(e, e'), E not given; analyzed transverse response function; deduced Δ resonance role. Nuclear matter calculations.
doi: 10.1016/S0375-9474(98)00235-8
1998BA46 Phys.Rev. C58, 1052 (1998) Analysis of Exchange Terms in a Projected Extended Random Phase Approximation Theory Applied to the Quasielastic (e, e') Reaction
doi: 10.1103/PhysRevC.58.1052
1996BA73 Phys.Lett. 386B, 50 (1996) E.Bauer, T.Gutsche, A.Muhm, R.Thierauf, Y.Yan, A.Faessler, R.Vinh Mau The rho Parameter of Low Energy Proton-Antiproton Scattering in the 3P0 Quark Model NUCLEAR REACTIONS 1H(p-bar, p-bar), E at 0.1-6 GeV/c; analyzed data; deduced model parameter. Nucleon-antinucleon potential model, effective 3P0 quark-antiquark operator.
doi: 10.1016/0370-2693(96)00974-4
1996BA79 Phys.Rev. C54, 2959 (1996) Continuum Random Phase Approximation Method Applied to the Inclusive Transverse Electron Scattering Response
doi: 10.1103/PhysRevC.54.2959
1995BA38 Nucl.Phys. A589, 669 (1995) Projected ERPA Correlations and the Longitudinal and Transverse Response in Quasi-Elastic (e, e') Reaction NUCLEAR REACTIONS 48Ca(e, e'X), E not given; calculated longitudinal, transverse response functions. Extended RPA, projection method.
doi: 10.1016/0375-9474(95)00168-Z
1995WI10 Phys.Rev. C51, 1693 (1995) J.L.Wile, D.L.Coffing, E.T.Bauer, A.L.Michael, M.A.Doerner, S.P.Baldwin, B.M.Szabo, B.Lott, B.M.Quednau, J.Toke, W.U.Schroder, R.T.de Souza Decay Patterns of Dysprosium Nuclei Produced in 32S + 118,124Sn Fusion Reactions NUCLEAR REACTIONS 118,124Sn(32S, X), E=130-180 MeV; measured neutron multiplicity distributions, α-, proton spectra, average multiplicities. 150,156Dy deduced level density parameters, maximum effect of superdeformed trapping.
doi: 10.1103/PhysRevC.51.1693
1991BA21 Phys.Rev. C43, 2438 (1991) Many-Body Correlations Effects in Quasielastic Electron Scattering NUCLEAR REACTIONS 40Ca(e, e'), E ≤ 300 MeV; calculated response functions; deduced two-particle, two-hole correlations role.
doi: 10.1103/PhysRevC.43.2438
1991MA44 Phys.Lett. 268B, 332 (1991) A.Mariano, E.Bauer, F.Krmpotic, A.F.R.de Toledo Piza Ground-State Correlations and Transverse Electron Scattering NUCLEAR STRUCTURE 56Fe; calculated transverse structure function; deduced ground state correlations role. Extended RPA, multi-particle, mult-hole configurations mixing.
doi: 10.1016/0370-2693(91)91586-K
1990HI07 Nucl.Phys. A516, 304 (1990) Gamow-Teller Strength Functions and Two-Neutrino Double-Beta Decay RADIOACTIVITY 76Ge, 82Se, 128,130Te(2β); calculated 2ν-mode β-decay T1/2, Gamow-Teller transition strength function. Quasiparticle RPA.
doi: 10.1016/0375-9474(90)90311-9
1989BA21 Phys.Rev. C39, 2468 (1989) Isospin Fragmentation of Pairing Vibrations NUCLEAR REACTIONS 112Sn(p, t), E not given; analyzed data. 110Sn deduced possible T(>) structure. RPA.
doi: 10.1103/PhysRevC.39.2468
1988BA44 Nucl.Phys. A485, 46 (1988) E.Bauer, F.Krmpotic, K.Nakayama On the Description of the Giant Resonances within an RPA Formalism with Good Isospin NUCLEAR STRUCTURE 48Ca, 90Zr, 208Pb; calculated giant resonances, Gamow-Teller transition strengths. Charge-independent hamiltonian.
doi: 10.1016/0375-9474(88)90521-0
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