Effects of Dark Matter on the Spontaneous Scalarization in Neutron Stars

Fahimeh Rahimi, Zeinab Rezaei
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Abstract

Dark matter, an important portion of compact objects, can influence different phenomena in neutron stars. The spontaneous scalarization in the scalar-tensor gravity has been proposed for neutron stars. Here, we investigate the spontaneous scalarization in dark matter admixed neutron stars. Applying the dark matter equations of state, we calculate the structure of scalarized neutron stars containing dark matter. The dark matter equations of state are based on observational data from the rotational curves of galaxies and the fermionic self-interacting dark matter. Our results verify that the spontaneous scalarization is affected by the dark matter pressure in neutron stars. Depending on the central density of scalarized dark matter admixed neutron stars, the dark matter pressure alters the central scalar field. The increase of dark matter pressure in low-density scalarized stars amplifies the central scalar field. However, the pressure of dark matter in high-density scalarized stars suppresses the central scalar field. Our calculations confirm that the stars in the merger event GW170817 and in the low-mass X-ray binary 4U 1820-30 can be scalarized dark matter admixed neutron stars.
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暗物质对中子星自发量子化的影响
暗物质是紧凑天体的重要组成部分,会影响中子星的不同现象。有人提出了中子星在标量张引力中的自发标量化现象。在这里,我们研究了暗物质掺杂中子星的自发标量化。应用暗物质状态方程,我们计算了含有暗物质的标量化中子星的结构。暗物质状态方程是基于星系旋转曲线和非离子自相互作用暗物质的观测数据。我们的研究结果验证了中子星的自发尺度化受到暗物质压力的影响。根据掺杂暗物质的中子星的尺度化中心密度,暗物质压力会改变中心尺度场。低密度标量化暗物质恒星中暗物质压力的增加会放大中心标量场。然而,高密度标量化恒星中的暗物质压力会抑制中心标量场。我们的计算证实,合并事件GW170817和低质量X射线双星4U 1820-30中的恒星可能是标量化暗物质掺杂的中子星。
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