论文标题
暗物质如何影响紧凑的星形特性和强度相互作用的高密度限制
How does dark matter affect compact star properties and high density constraints of strongly interacting matter
论文作者
论文摘要
我们研究了不对称的骨骼暗物质对中子星特性的影响,包括潮汐变形性,最大质量,半径和恒星内物质分布的可能变化。提出了暗物质颗粒倾向于在恒星核中凝结或产生扩展光环的条件。我们表明,与纯净的巴属恒星相比,在核心中凝结的暗物质会导致总重力质量和潮汐变形性的降低,我们将其视为状态方程的有效软化。另一方面,暗物质光环的存在增加了那些可观察到的数量。因此,关于紧凑型恒星的观察数据可能会受到累积的暗物质的影响,因此,我们在高密度下对物质进行了强烈相互作用的限制。为了确认紧凑型恒星内部的暗物质存在,并在高密度下打破了累积的暗物质效果与强烈相互作用的物质的效果,提出了几种天体物理和GW测试。
We study the impact of asymmetric bosonic dark matter on neutron star properties, including possible changes of tidal deformability, maximum mass, radius, and matter distribution inside the star. The conditions at which dark matter particles tend to condensate in the star's core or create an extended halo are presented. We show that dark matter condensed in a core leads to a decrease of the total gravitational mass and tidal deformability compared to a pure baryonic star, which we will perceive as an effective softening of the equation of state. On the other hand, the presence of a dark matter halo increases those observable quantities. Thus, observational data on compact stars could be affected by accumulated dark matter and, consequently, constraints we put on strongly interacting matter at high densities. To confirm the presence of dark matter in the compact star's interior, and to break the degeneracy between the effect of accumulated dark matter and strongly interacting matter properties at high densities, several astrophysical and GW tests are proposed.