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Electron screening effects on crustal torsional oscillations

机译:电子屏蔽对地壳扭转振荡的影响

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We systematically examine the crustal torsional oscillations as varying the stellar mass and radius, where we take into account the effect of electron screening due to the inhomogeneity of electron distribution. In the examinations, we adopt two different equations of state (EOSs) for the inner crust region of neutron stars. As a result, we find that the frequencies depend obviously on the EOS, even if the neutron star models are almost independent of the EOS. That is, one could solve the degeneracy of the stellar models with different EOS via the observations of shear oscillations frequencies. Additionally, we find that the fundamental frequencies of the?-th order torsional oscillations can reduce 6% due to the effect of electron screening, which is independent of the adopted EOS and stellar models. This reduction of frequencies can be crucial to make constraints on the density dependence of the nuclear symmetry energy,L, i.e., the constraint onLcan reduce~15%by the electron screening effect.
机译:我们系统地研究了随着恒星质量和半径变化而引起的地壳扭转振荡,其中考虑了由于电子分布不均匀而产生的电子屏蔽效应。在检查中,我们为中子星的内壳区域采用两个不同的状态方程(EOS)。结果,我们发现,即使中子星模型几乎独立于EOS,频率也明显取决于EOS。也就是说,可以通过观察剪切振荡频率来解决具有不同EOS的恒星模型的退化。另外,我们发现由于电子屏蔽的作用,二阶扭转振荡的基频可以降低6%,这与采用的EOS和恒星模型无关。频率的降低对于限制核对称能L的密度依赖性至关重要,即通过电子屏蔽效应,对L的限制可以降低〜15%。

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