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Confronting nuclear equation of state in the presence of dark matter using GW170817 observation in relativistic mean field theory approach

机译:相对论平均场理论方法中利用GW170817观测暗物质存在下的核态方程。

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We confront the admixture of dark matter inside a neutron star using gravitational wave constraints coming from binary neutron star merger. We consider a relativistic mean field model including σ ? ω ? ρ meson interaction with NL3 parametrization. We study fermionic dark matter interacting with nucleonic matter via Higgs portal mechanism. We show that admixture of dark matter inside the neutron star softens the equation state and lowers the value of tidal deformability. Gravitational wave GW170817 observation puts an upper bound on tidal deformability of a binary neutron star with low spin prior at 90%?confidence level, which disfavors stiff equation of state such as the Walecka model with NL3 parametrization. However, we show that the Walecka model with NL3 parametrization with a fermionic dark matter component satisfies the tidal deformability bound coming from the GW170817 observation.
机译:我们利用来自二元中子星合并的引力波约束来面对中子星内部暗物质的混合。我们考虑一个相对论的平均场模型,包括σ? ω? ρ介子与NL3参数化的相互作用。我们通过希格斯门户机制研究与核子物质相互作用的铁离子暗物质。我们表明,中子星内部暗物质的混合使方程状态变软并降低了潮汐变形能力的值。引力波GW170817的观测值使置信度为90%的先天低自旋双星中子星的潮汐变形能力达到上限,这不利于刚性状态方程,例如具有NL3参数化的Walecka模型。但是,我们表明,具有铁离子暗物质成分的NL3参数化的Walecka模型满足了来自GW170817观测的潮汐可变形性界限。

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