论文标题
改进了中子星中暗物质捕获的治疗II:松弛目标
Improved Treatment of Dark Matter Capture in Neutron Stars II: Leptonic Targets
论文作者
论文摘要
中子星在极端条件下藏有物质,为基本相互作用提供了独特的测试场。我们最近在中子星中开发了对暗物质(DM)捕获的改进处理,该恒星正确地融合了许多重要的物理效应,并概述了有用的分析近似,这些分析近似在散射幅度与质量能量中心无关时有效。现在,我们将该分析扩展到所有交互类型。我们还讨论了超越零温度近似值的效果,从而增强了低质量暗物质的捕获速率,并为深色物质上降低速率和蒸发质量提供了近似值。我们将这些结果应用于散射黑物质的血液靶标,对此,正确的相对论描述至关重要。我们发现,对DM-Lepton散射横截面的潜在中子恒星敏感性大大超过了电子循环实验,尤其是在子GEV方案中,对亚M-EV DM的敏感性远远超出了未来陆地实验的范围。
Neutron stars harbour matter under extreme conditions, providing a unique testing ground for fundamental interactions. We recently developed an improved treatment of dark matter (DM) capture in neutron stars that properly incorporates many of the important physical effects, and outlined useful analytic approximations that are valid when the scattering amplitude is independent of the centre of mass energy. We now extend that analysis to all interaction types. We also discuss the effect of going beyond the zero-temperature approximation, which provides a boost to the capture rate of low mass dark matter, and give approximations for the dark matter up-scattering rate and evaporation mass. We apply these results to scattering of dark matter from leptonic targets, for which a correct relativistic description is essential. We find that the potential neutron star sensitivity to DM-lepton scattering cross sections greatly exceeds electron-recoil experiments, particularly in the sub-GeV regime, with a sensitivity to sub-MeV DM well beyond the reach of future terrestrial experiments.