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NSR database version of April 27, 2024.

Search: Author = X.X.Liu

Found 6 matches.

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2018ZH18      Phys.Rev. C 97, 044618 (2018)

G.L.Zhang, G.X.Zhang, C.J.Lin, J.Lubian, J.Rangel, B.Paes, J.L.Ferreira, H.Q.Zhang, W.W.Qu, H.M.Jia, L.Yang, N.R.Ma, L.J.Sun, D.X.Wang, L.Zheng, X.X.Liu, X.T.Chu, J.C.Yang, J.S.Wang, S.W.Xu, P.Ma, J.B.Ma, S.L.Jin, Z.Bai, M.R.Huang, H.L.Zang, B.Yang, Y.Liu

Angular distribution of elastic scattering induced by 17F on medium-mass target nuclei at energies near the Coulomb barrier

NUCLEAR REACTIONS 89Y(17F, 17F), E=50, 59 MeV, [17F secondary beam from 1H(17O, n), E=7.6 MeV/nucleon primary reaction]; measured reaction products, 17F scattered particles, differential σ(θ, E) using DSSD and SSD detector telescopes at RIBLL facility in Lanzhou. 16F, 90Zr; calculated spectroscopic amplitudes for excited levels in the coupled reaction channels (CRC) formalism for one-proton transfer reactions using the Sao Paulo double-folding potential. Comparison with Continuum-discretized coupled-Channels (CDCC) calculations.

doi: 10.1103/PhysRevC.97.044618
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetS0217.


2017XI05      Int.J.Mod.Phys. E26, 1750010 (2017)

Y.-Z.Xing, X.-X.Liu, X.-B.Liu, H.F.Zhang, Y.-M.Zheng

Nuclear stopping power evaluated via free protons emitted in reaction Xe+Sn near fermi energy

NUCLEAR REACTIONS 129Sn(129Xe, X)1H, E<105 MeV; calculated isotropy ratio with respect to the incident energy for free protons, stopping power. Comparison with available data.

doi: 10.1142/S0218301317500100
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2016ZH17      Nucl.Phys. A951, 86 (2016)

G.L.Zhang, Y.J.Yao, M.F.Guo, M.Pan, G.X.Zhang, X.X.Liu

Comparative studies for different proximity potentials applied to large cluster radioactivity of nuclei

NUCLEAR STRUCTURE 222,224,226Ra, 228,230,232Th, 230,232,234,236U, 236,238,240Pu, 242Cm; calculated large cluster radioactivity T1/2 using more different proximity potentials, Compared with data and published calculations using different models.

doi: 10.1016/j.nuclphysa.2016.03.039
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2015LI23      Chin.Phys.C 39, 074101 (2015)

X.-X.Liu, G.-L.Zhang, H.-Q.Zhang

Study of fusion Q-value rule in sub-barrier fusion of heavy ions

NUCLEAR REACTIONS Zr, Sn(Ca, X), Sm, Ni, Ge(O, X), Ni(Ni, X), Zr, Ni, Mg(S, X), Mg, Ni, Si(Si, X), E not given; analyzed available data; deduced fusion σ, Q-value.

doi: 10.1088/1674-1137/39/7/074101
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2014ZH18      Phys.Rev. C 89, 054602 (2014)

G.L.Zhang, X.X.Liu, C.J.Lin

Systematic analysis of the effect of a positive Q-value neutron transfer in fusion reactions

NUCLEAR REACTIONS 90,96Zr, 110Pd(32S, X), (36S, X); 90,96Zr, 124,132Sn(40Ca, X), (48Ca, X); 58,60,62,64Ni, 76Ge, 144,148,154Sm, 186W(16O, X); 144Sm(17O, X); 58,60,64Ni, 74Ge, 118Sn(18O, X); 58,64Ni, 124,132Sn(58Ni, X); 64Ni, 118,124,132Sn(64Ni, X), E near Coulomb barrier; analyzed experimental fusion σ(E) data in terms of fusion functions F(x) as a function of x; investigated systematic behavior of positive Q-value neutron transfer (PQNT), 2-neutron transfers.

doi: 10.1103/PhysRevC.89.054602
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2002XU08      Phys.Rev. D65, 114008 (2002)

Q.-H.Xu, X.-X.Liu, Z.-T.Liang

Longitudinal Polarization of Hyperons in High p(perp) Jets in Singly Polarized pp Collisions at High Energies

NUCLEAR REACTIONS 1H(polarized p, X), E(cm)=200, 500 GeV; calculated hyperon production σ, longitudinal polarization. Several models compared.

doi: 10.1103/PhysRevD.65.114008
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