NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = W.Zou Found 8 matches. 2017HU08 Phys.Rev. C 96, 014324 (2017) T.H.Huang, W.Q.Zhang, M.D.Sun, Z.Liu, J.G.Wang, X.Y.Liu, B.Ding, Z.G.Gan, L.Ma, H.B.Yang, Z.Y.Zhang, L.Yu, J.Jiang, K.L.Wang, Y.S.Wang, M.L.Liu, Z.H.Li, J.Li, X.Wang, H.Y.Lu, C.J.Lin, L.J.Sun, N.R.Ma, Z.Z.Ren, F.S.Zhang, W.Zou, X.H.Zhou, H.S.Xu, G.Q.Xiao α-decay chain of the short-lived isotope 220Pa established using a digital pulse processing technique RADIOACTIVITY 220Pa(α)[from 187Re(40Ar, 3nα), E=188 MeV at HIRFL-Lanzhou facility]; 216Ac(α)[from 220Pa parent decay]; measured Eα, (evaporation residue)α-correlated events using the digital pulse processing technique, half-lives of decays of 220Pa and 216Ac; deduced J, π of the ground state of 220Pa, and reduced α-decay width. Comparison with previous experimental Eα and T1/2 for 220Pa.
doi: 10.1103/PhysRevC.96.014324
2010GU10 Nucl.Phys. A834, 87c (2010) J.-Z.Gu, B.-B.Peng, W.-H.Zou, S.-F.Shen Decay out of A Superdeformed Band: Chaoticity Dependence and A Microscopic Understanding NUCLEAR STRUCTURE 188,190,192,194,196Hg; calculated super-deformed bands, E2 transition strengths, angular momentum, deformation using projected shell model with HFB based on Gogny force.
doi: 10.1016/j.nuclphysa.2010.01.026
2010ZO01 Chin.Phys.Lett. 27, 012101 (2010) Yrast Properties of Dysprosium Isotopes in the Double Mid-Shell Region NUCLEAR STRUCTURE 164,166,168,170,172,174Dy; calculated level energies, moment of inertia, yrast bands using projected shell model; deduced 170Dy back-bending. Comparison with experimental data.
doi: 10.1088/0256-307X/27/1/012101
2010ZO02 Chin.Phys.C 34, 56 (2010) W.-H.Zou, Y.Tian, S.-F.Shen, J.-Z.Gu, B.-B.Peng, D.-D.Zhang, Z.-Y.Ma Nuclear structure around 80Zr NUCLEAR STRUCTURE 80,82,84Zr; calculated potential energy surfaces, ground state bands. Projected shell model (PSM) and relativistic Hartee-Bogoliubov (RHB) theory.
doi: 10.1088/1674-1137/34/1/010
2010ZO03 Phys.Rev. C 82, 024309 (2010) W.-h.Zou, Y.Tian, J.-z.Gu, S.-f.Shen, J.-m.Yao, B.-b.Peng, Z.-y.Ma Microscopic description of nuclear structure around 80Zr NUCLEAR STRUCTURE 80,82,84Zr; calculated ground-state total binding energies and angular momentum projected potential energy surfaces (AMPPES) using projected shell model with a quadrupole constrained relativistic Hartree-Bogoliubov (RHB) theory and NL3 effective interaction and Gogny D1S interaction for the pairing force. Shape coexistence and shape transitions, and decay out of superdeformed rotational bands.
doi: 10.1103/PhysRevC.82.024309
2008ZO01 Phys.Rev. C 77, 014314 (2008) W.Zou, G.Colo, Z.Ma, H.Sagawa, P.F.Bortignon Tensor correlations and evolution of single-particle energies in medium-mass nuclei NUCLEAR STRUCTURE 40,42,44,46,48Ca; calculated energy differences between states. 46Ar, 48Ca; calculated spin-orbit splittings, single particle energies using Skyrme model with tensor forces. Compared with experiment and with Skyrme model without tensor force.
doi: 10.1103/PhysRevC.77.014314
2008ZO03 Phys.Rev. C 78, 064613 (2008) Microscopic optical potential for α-nucleus elastic scattering in a Dirac-Brueckner-Hartree-Fock approach NUCLEAR REACTIONS 12C(α, α), E=104, 120, 145, 166, 172.5 MeV; 16O(α, α), E=48.7, 54.1, 69.5, 80.7, 104 MeV; 28Si(α, α), E=104, 166, 240 MeV; 40Ca(α, α), E=40.05, 47, 53.9, 80, 104, 141.7 MeV; calculated density dependence of optical model potentials, normalization factors, σ(θ). DBHF calculations. Comparison with experimental data.
doi: 10.1103/PhysRevC.78.064613
2003LI07 Phys.Rev. C 67, 024608 (2003) J.-Y.Liu, W.-J.Guo, Y.Z.Xing, W.Zou, X.-G.Lee Influence of a momentum dependent interaction on the isospin dependence of fragmentation and dissipation in intermediate energy heavy ion collisions NUCLEAR REACTIONS 76Kr(76Kr, X), 76Zn(76Zn, X), E=50, 150, 300 MeV/nucleon; calculated nuclear stopping, fragment multiplicity vs time. Isospin dependent quantum molecular dynamics, momentum dependent interaction.
doi: 10.1103/PhysRevC.67.024608
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