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Implications of feebly interacting dark sector on neutron star properties and constraints from GW170817

机译:在GW170817的中子星性质和约束中,微弱地互动的黑暗部门的影响

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We investigate the effect of feeble interaction of dark matter (DM) with hadronic matter on the equation of state (EoS) and structural properties of neutron stars (NSs) in static conditions. For the purpose, we adopt the effective chiral model for the hadronic sector and for the first time in the context of possible existence of DM inside NSs, we introduce the DM-SM interaction through light new physics mediator. Moreover, the mass of DM fermion, the mediator and the coupling are adopted from the self-interaction constraint from Bullet cluster and from present day relic abundance. Within the considered framework, the work highlights the underlying stiffening of EoS in the presence of DM fermion of mass of the order of a few GeV compared to the no-DM scenario. Consequently, the maximum gravitational mass of NS is obtained consistent with the bounds from the most massive pulsars that were not satisfied with the hadronic matter EoS alone. The estimates of radius and tidal deformability of 1.4-M-circle dot NS and the tidal deformabilities of the individual components of the binary neutron stars (BNS) associated with GW170817 are all in good agreement with the individual constraints obtained from GW170817 observation of BNS merger.
机译:我们探讨了暗物质(DM)对静脉辐射物质对静态条件中子恒星(NSS)的结构特性的辐射物质的虚弱相互作用的影响。为此,我们采用了辐射界的有效手性模型,并在NSS内部可能存在DM的情况下首次采用了第一次,我们通过光新物理调解员介绍DM-SM互动。此外,从子弹簇的自相互作用约束和现今遗物丰度中采用了DM FERMION,介体和耦合的质量。在考虑的框架内,与No-DM场景相比,该工作突出了DM FEMION的DM FERMION在DM FERMION的情况下的底层加强。因此,获得NS的最大重力质量与来自最巨大的脉冲星的界限一致,这些脉冲脉冲不满足单独的辐射物质EOS。与GW170817相关联的二元中子恒星(BNS)的各个组件的半径和潮汐变形性的估计均与从GW170817观察BNS合并的观察结果吻合良好。

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