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- W1967357659 abstract "The low-lying isovector dipole strengths in the neutron-rich nuclei $^{26}mathrm{Ne}$ and $^{28}mathrm{Ne}$ are investigated in the quasiparticle relativistic random phase approximation. Nuclear ground-state properties are calculated in an extended relativistic mean field theory plus Bardeen-Cooper-Schrieffer (BCS) method where the contribution of the resonant continuum to pairing correlations is properly treated. Numerical calculations are tested in the case of isovector dipole and isoscalar quadrupole modes in the neutron-rich nucleus $^{22}mathrm{O}$. It is found that in the present calculation, low-lying isovector dipole strengths at ${E}_{x}<10phantom{rule{0.3em}{0ex}}mathrm{MeV}$ in nuclei $^{26}mathrm{Ne}$ and $^{26}mathrm{Ne}$ exhaust about 4.9% and 5.8% of the Thomas-Reiche-Kuhn dipole sum rule, respectively. The centroid energy of the low-lying dipole excitation is located at 8.3 MeV in $^{26}mathrm{Ne}$ and 7.9 MeV in $^{28}mathrm{Ne}$." @default.
- W1967357659 created "2016-06-24" @default.
- W1967357659 creator A5034936272 @default.
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- W1967357659 date "2005-03-10" @default.
- W1967357659 modified "2023-09-25" @default.
- W1967357659 title "Low-lying dipole modes inNe26,28in the quasiparticle relativistic random phase approximation" @default.
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- W1967357659 doi "https://doi.org/10.1103/physrevc.71.034305" @default.
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