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NSR database version of May 21, 2024.

Search: Author = X.B.Zhang

Found 11 matches.

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2024YA04      Phys.Rev.Lett. 132, 072502 (2024)

H.B.Yang, Z.G.Gan, Y.J.Li, M.L.Liu, S.Y.Xu, C.Liu, M.M.Zhang, Z.Y.Zhang, M.H.Huang, C.X.Yuan, S.Y.Wang, L.Ma, J.G.Wang, X.C.Han, A.Rohilla, S.Q.Zuo, X.Xiao, X.B.Zhang, L.Zhu, Z.F.Yue, Y.L.Tian, Y.S.Wang, C.L.Yang, Z.Zhao, X.Y.Huang, Z.C.Li, L.C.Sun, J.Y.Wang, H.R.Yang, Z.W.Lu, W.Q.Yang, X.H.Zhou, W.X.Huang, N.Wang, S.G.Zhou, Z.Z.Ren, H.S.Xu

Discovery of New Isotopes 160Os and 156W: Revealing Enhanced Stability of the N=82 Shell Closure on the Neutron-Deficient Side

NUCLEAR REACTIONS 106Cd(58Ni, 4n)160Os, E=335 MeV; measured reaction products; deduced new isotopes, σ. The Spectrometer for Heavy Atoms and Nuclear Structure (SHANS), the Sector Focusing Cyclotron of the Heavy Ion Research Facility in Lanzhou (HIRFL), China.

RADIOACTIVITY 160Os(α), 156W(β+); measured decay products, Eα, Iα; deduced α-particles energies, Q-values, T1/2, α-decay reduced widths, N=82 shell closure toward the proton drip line. Comparison with theoretical calculations.

doi: 10.1103/PhysRevLett.132.072502
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2023WA22      Chin.Phys.C 47, 084001 (2023)

C.-J.Wang, G.Guo, H.J.Ong, Y.-N.Song, B.-H.Sun, I.Tanihata, S.Terashima, X.-L.Wei, J.-Y.Xu, X.-D.Xu, J.-C.Zhang, Yo.Zheng, L.-H.Zhu, Y.Cao, G.-W.Fan, B.-S.Gao, J.-X.Han, G.-S.Li, C.-G.Lu, H.-T.Qi, Y.Qin, Z.-Y.Sun, L.-P.Wan, K.-L.Wang, S.-T.Wang, X.-X.Wang, M.-X.Zhang, W.-W.Zhang, X.-B.Zhang, X.-H.Zhang, Z.-C.Zhou

Charge-changing cross section measurements of 300 MeV/nucleon 28Si on carbon and data analysis

NUCLEAR REACTIONS C(28Si, X), E=304 MeV/nucleon; measured reaction products; deduced σ. Comparison with available data. The second Radioactive Ion Beam Line in Lanzhou (RIBLL2).

doi: 10.1088/1674-1137/acd366
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2015ZH10      Nucl.Phys. A938, 1 (2015)

X.-B.Zhang, Z.-C.Bu, F.-P.Peng, Y.Zhang

Magnetic effects on color-flavor-locked quark matter and non-Abelian vortices via Ginzburg-Landau approach

doi: 10.1016/j.nuclphysa.2015.03.001
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2003ZH08      Chin.Phys.Lett. 20, 213 (2003)

X.-B.Zhang, P.-Z.Ning

Chiral Effective Lagrangian Description of Nuclear Matter with in-Medium Pion Effect

doi: 10.1088/0256-307X/20/2/312
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2003ZH33      Europhys.Lett. 61, 41 (2003)


In-medium chiral effective Lagrangian description of nuclear matter and Walecka-type mean-field models

doi: 10.1209/epl/i2003-00242-8
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2002LI01      Phys.Rev. D65, 014003 (2002)

X.-Q.Li, X.-B.Zhang, B.-Q.Ma

Asymmetry of the Strange Sea in Nucleons

doi: 10.1103/PhysRevD.65.014003
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2001LU12      Phys.Rev. C64, 047302 (2001)

Y.-A.Luo, X.-B.Zhang, F.Pan, P.-Z.Ning, J.P.Draayer

Magnetic Excitations in the Nucleon-Pair Shell Model

NUCLEAR STRUCTURE 134Ba; calculated transitions B(M1).

doi: 10.1103/PhysRevC.64.047302
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2001ZH41      Europhys.Lett. 55, 795 (2001)

X.-B.Zhang, L.Li, P.-Z.Ning

In-Medium Kaon-Nucleon Vector Interaction Based on Chiral Effective Lagrangian

doi: 10.1209/epl/i2001-00350-5
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2000ZH35      Chin.Phys.Lett. 17, 649 (2000)

X.-B.Zhang, X.-Q.Li, P.-Z.Ning

Finite-Temperature Phase Structure in the Chiral σ-ω Model with Dilatons

1998ZH26      Chin.Phys.Lett. 15, 483 (1998)

X.-B.Zhang, Q.-R.Zhang

Influence of Relativistic Finite Volume Effect of Nucleons on the Dense Matter Properties

doi: 10.1088/0256-307X/15/7/006
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1998ZH42      Int.J.Mod.Phys. E7, 573 (1998)

X.-B.Zhang, Q.-R.Zhang

Relativistic Finite-Volume Effect of Baryons and Phase Transition to the Quark-Gluon Plasma

doi: 10.1142/S0218301398000312
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