论文标题
暗物质的径向振荡混合了中子星星
Radial Oscillations of Dark Matter admixed Neutron Stars
论文作者
论文摘要
在相对论的平均场模型中,我们研究了黑物质(DM)混合中子星的性质,考虑了各向同性物质制成的非旋转对象。我们通过假设超对称模型中的fermionic DM已经在中子星(NS)内积聚了,我们采用了状态(EOS)的IOPB-I HADRONIC方程。探索了DM对脉动DM混合中子星(有或没有地壳)的脉动DM混合中子恒星的径向振荡的影响。观察到DM的存在会使EOS软化,而EOS又降低了最大质量及其相应的半径。此外,添加DM会导致脉动物体的频率较高,因此我们显示了具有DM Fermi动量的规范NS基本模式频率的线性性。我们还研究了解决Sturm-Liouville边界价值问题的本本征函数的曲线,并验证其有效性。此外,我们研究了NSS的稳定性,考虑到恒星质量的基本模式变化,并验证稳定性标准$ \ partial m/\partialρ_c> 0 $。最后,也显示了外壳对不同DM费米动量的大频率分离的影响。
Within the relativistic mean-field model, we investigate the properties of dark matter (DM) admixed neutron stars, considering non-rotating objects made of isotropic matter. We adopt the IOPB-I hadronic equation of state (EOS) by assuming that the fermionic DM within super-symmetric models has already been accreted inside the neutron star (NS). The impact of DM on the mass-radius relationships and the radial oscillations of pulsating DM admixed neutron stars (with and without the crust) are explored. It is observed that the presence of DM softens the EOS, which in turn lowers the maximum mass and its corresponding radius. Moreover, adding DM results in higher frequencies of pulsating objects and hence we show the linearity of fundamental mode frequency of canonical NS with DM Fermi momentum. We also investigate the profile of eigenfunctions solving the Sturm-Liouville boundary value problem, and verify its validity. Further, we study the stability of NSs considering the fundamental mode frequency variation with the mass of the star, and verify the stability criterion $\partial M/\partialρ_c > 0$. Finally, the effect of the crust on the large frequency separation for different DM Fermi momenta is shown as well.