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- W2277329237 endingPage "045107" @default.
- W2277329237 startingPage "045107" @default.
- W2277329237 abstract "The relativistic mean field theory formulated with Green's function method (RMF-GF) is applied to investigate single-proton resonant states and isospin dependence. The calculated energies and widths for the single-proton resonant states in are in good agreement with previous investigations. The single-proton resonant states of the Sn isotopes and the N = 82 isotones are systematically studied and it is shown that the calculated energies and widths decrease monotonically with the increase of neutron number while increase monotonically with the increase of proton number. To further examine the evolutions of the single-proton resonant states, their dependence on the depth, radius and diffuseness of nuclear potential is investigated with the help of an analytic Woods–Saxon potential, and it is found that the increase of radius plays the most important role in the cross phenomenon appearing in the single-proton resonant states of the Sn isotopes." @default.
- W2277329237 created "2016-06-24" @default.
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- W2277329237 date "2016-02-17" @default.
- W2277329237 modified "2023-09-23" @default.
- W2277329237 title "Single-proton resonant states and the isospin dependence investigated by Green’s function relativistic mean field theory" @default.
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- W2277329237 doi "https://doi.org/10.1088/0954-3899/43/4/045107" @default.
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