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NSR database version of April 29, 2024.

Search: Author = L.Qian

Found 5 matches.

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2020SU04      Phys.Rev. C 101, 014321 (2020)

T.-T.Sun, L.Qian, C.Chen, P.Ring, Z.P.Li

Green's function method for the single-particle resonances in a deformed Dirac equation

NUCLEAR STRUCTURE 37Mg; calculated Nilsson levels for bound and resonant orbitals in the halo candidate nucleus, density of states, energies of the single-neutron resonant states, single-neutron levels using Green's function (GF) method to solve the coupled-channel Dirac equation with quadrupole-deformed Woods-Saxon potentials. Comparison with other theoretical approaches.

doi: 10.1103/PhysRevC.101.014321
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2019SU06      Phys.Rev. C 99, 034310 (2019)

T.-T.Sun, W.-L.Lu, L.Qian, Y.-X.Li

Green's function method for the spin and pseudospin symmetries in the single-particle resonant states

NUCLEAR STRUCTURE 208Pb; calculated density of neutron states, energies and widths of single-neutron resonant states, and spin- and pseudospin-doublets of single-neutron spectra, reduced spin-orbit (SO) splitting, reduced SO width splitting, single-particle levels and the mean-field potential for neutrons, reduced energy splittings versus reduced width splittings, and distribution functions. Solution of the Dirac equation containing a Woods-Saxon mean-field potential with Green's function method.

doi: 10.1103/PhysRevC.99.034310
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2019SU09      Phys.Rev. C 99, 054316 (2019)

T.-T.Sun, Z.-X.Liu, L.Qian, B.Wang, W.Zhang

Continuum Skyrme-Hartree-Fock-Bogoliubov theory with Green's function method for odd-A nuclei

NUCLEAR STRUCTURE 159Sn; calculated neutron occupation number density, neutron density and neutron pairing density distributions, neutron Hartree-Fock single-particle energy. Z=50, A=122-178; calculated S(2n), neutron quasiparticle levels, neutron rms radii and neutron densities. Self-consistent continuum Skyrme-HFB theory with the Green's function technique in the coordinate space including equal filling approximation blocking effects. Comparison with experimental values, and with other theoretical predictions.

doi: 10.1103/PhysRevC.99.054316
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1998TA06      Nucl.Phys. A631, 482c (1998)

P.C.Tandy, L.Qian, S.Banerjee

Meson Substructure and ρNN and ωNN Couplings

doi: 10.1016/S0375-9474(98)00052-9
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1992ZH04      Phys.Rev. C45, 1397 (1992)

W.Zhu, L.Qian

From Constituent Quark to Current Quark: Origin of the European Muon Collaboration effect

NUCLEAR STRUCTURE 40Ca, 6Li, 12C, 2H; calculated structure function, ratios. Constituent quark model.

doi: 10.1103/PhysRevC.45.1397
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