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NSR database version of April 25, 2024.

Search: Author = H.S.Wang

Found 8 matches.

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2023CH16      Phys.Rev. C 107, 034910 (2023)

Q.Chen, H.-S.Wang, G.-L.Ma

Probing fluctuations and correlations of strangeness by net-kaon cumulants in Au + Au collisions at √ sNN = 7.7 GeV

doi: 10.1103/PhysRevC.107.034910
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2023DA02      Phys.Rev. C 107, 014905 (2023)

P.Dasgupta, H.-S.Wang, G.-L.Ma

Effect of global momentum conservation on longitudinal flow decorrelation

doi: 10.1103/PhysRevC.107.014905
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2022WA10      Phys.Rev. C 105, 034912 (2022)

H.-S.Wang, G.-L.Ma, Z.-W.Lin, W.-j.Fu

Thermodynamics of partonic matter in relativistic heavy-ion collisions from a multiphase transport model

doi: 10.1103/PhysRevC.105.034912
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2022WA44      Phys.Rev. C 106, 064907 (2022)

H.-Sh.Wang, G.-L.Ma

Testing the collectivity in large and small colliding systems with test particles

doi: 10.1103/PhysRevC.106.064907
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2018WA31      Phys.Rev. C 98, 054608 (2018)

H.-S.Wang, J.Xu, B.-A.Li, W.-Q.Shen

Reexamining the isospin-relaxation time in intermediate-energy heavy-ion collisions

NUCLEAR REACTIONS 40Ca(124Sn, X), E=25, 100, 200, 300 MeV/nucleon; calculated time evolutions of the ratio of the particle number in residues to the total particle number, and isospin equilibrium meter, isospin relaxation time as functions of symmetry energy and effective neutron-proton mass splitting. 70Zn(70Zn, X), E=35 MeV/nucleon; calculated contours of isospin asymmetry, correlation between the isospin asymmetry and reduced nucleon number density, time evolution of isovector dipole moment as function of symmetry energies and effective neutron-proton mass splittings. Isospin-dependent Boltzmann-Uehling-Uhlenbeck (IBUU) transport model using the lattice Hamiltonian method to calculate the mean-field potential from the improved isospin- and momentum-dependent interaction (ImMDI).

doi: 10.1103/PhysRevC.98.054608
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2014WA39      Nucl.Phys. A930, 117 (2014)

H.-s.Wang, S.-m.Liu, J.Cao, X.Liu, Z.-j.Xiao

The three body decays B+ → π+ π- π+ perturbative QCD approach

doi: 10.1016/j.nuclphysa.2014.08.001
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2011TU02      Phys.Rev.Lett. 106, 112501 (2011)

X.L.Tu, H.S.Xu M.Wang, Y.H.Zhang, Yu.A.Litvinov, Y.Sun, H.Schatz, X.H.Zhou, Y.J.Yuan, J.W.Xia, G.Audi, K.Blaum, C.M.Du, P.Geng, Z.G.Hu, W.X.Huang, S.L.Jin, L.X.Liu, Y.Liu, X.Ma, R.S.Mao, B.Mei, P.Shuai, Z.Y.Sun, H.Suzuki, S.W.Tang, J.S.Wang, S.T.Wang, G.Q.Xiao, X.Xu, T.Yamaguchi, Y.Yamaguchi, X.L.Yan, J.C.Yang, R.P.Ye, Y.D.Zang, H.W.Zhao, T.C.Zhao, X.Y.Zhang, W.L.Zhan

Direct Mass Measurements of Short-Lived A=2Z-1 Nuclides 63Ge, 65As, 67Se, and 71Kr and Their Impact on Nucleosynthesis in the rp Process

ATOMIC MASSES 63Ge, 65As, 67Se, 71Kr; measured ion time resolution; deduced mass excesses, proton separation energy. Comparison with AME03 and mirror nuclei, x-ray luminosity and mass number abundances calculations.

doi: 10.1103/PhysRevLett.106.112501
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1994LI18      Phys.Rev. C49, 2465 (1994)

J.-Z.Liao, H.-S.Wang

Broken O(6) Symmetry of IBM1 with Three-Body Potential

NUCLEAR STRUCTURE 72,74,76Ge, 124,126,128Xe; calculated levels. 194,198,192,196Pt; calculated levels, B(λ). Broken O(6) symmetry, three-body potential, interacting boson model.

doi: 10.1103/PhysRevC.49.2465
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