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Chunyan Song

Publications and source records attributed to Chunyan Song.

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Lambda and Anti-Lambda Hypernuclei in Relativistic Mean-field Theory

Several aspects about $Λ$-hypernuclei in the relativistic mean field theory, including the effective $Λ$-nucleon coupling strengths based on the successful effective nucleon-nucleon interaction PK1, hypernuclear magnetic moment and $\barΛ$-hypernuclei, have been presented. The effect of tensor coupling in $Λ$-hypernuclei and the impurity effect of $\barΛ$ to nuclear structure have been discussed in detail.

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Tensor coupling effects on spin symmetry in anti-Lambda spectrum of hypernuclei

The effects of $\barΛ\barΛω$-tensor coupling on the spin symmetry of $\barΛ$ spectra in $\barΛ$-nucleus systems have been studied with the relativistic mean-field theory. Taking $^{12}$C+$\barΛ$ as an example, it is found that the tensor coupling enlarges the spin-orbit splittings of $\barΛ$ by an order of magnitude although its effects on the wave functions of $\barΛ$ are negligible. Similar conclusions has been observed in $\barΛ$-nucleus of different mass regions, including $^{16}$O+$\barΛ$, $^{40}$Ca+$\barΛ$ and $^{208}$Pb+$\barΛ$. It indicates that the spin symmetry in anti-lambda-nucleus systems is still good irrespective of the tensor coupling.

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Spin Symmetry for Anti-Lambda Spectrum in atomic nucleus

The spin symmetry of anti-Lambda spectrum in nucleus $^{16}$O has been studied in the relativistic mean field theory. The spin-orbit splittings of spin doublets are found to be around 0.03-0.07 MeV and the dominant components of the Dirac spinor for the anti-Lambda spin doublets are found to be near identical. It indicates that there is an even better spin symmetry in the anti-Lambda spectrum than that in the anti-nucleon spectrum.

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