论文标题
改进中子星中暗物质捕获的处理
Improved Treatment of Dark Matter Capture in Neutron Stars
论文作者
论文摘要
中子恒星提供了一个宇宙实验室,以研究暗物质颗粒的性质及其相互作用。中子星可以通过散射捕获暗物质,其中动能被转移到恒星中。这可能会带来许多观察后果,例如将旧的中子星加热到红外温度。捕获过程的先前治疗方法采用了各种近似或简化。我们在这里提出了对暗物质捕获的改进处理,对广泛的暗物质质量范围有效,该范围正确纳入了所有相关的物理效果。这些包括重力聚焦,完全相对论的散射处理,保利阻塞,中子恒星不透明度和多碎片效应。我们提供一般表达式,使确切的捕获速率可以按数值计算,并得出简化的表达式,这些表达式适用于特定的相互作用类型或质量制度,并大大提高了计算效率。我们的形式主义适用于从任何中子恒星成分中散射暗物质,或在其他紧凑型物体中捕获暗物质。
Neutron stars provide a cosmic laboratory to study the nature of dark matter particles and their interactions. Dark matter can be captured by neutron stars via scattering, where kinetic energy is transferred to the star. This can have a number of observational consequences, such as the heating of old neutron stars to infra-red temperatures. Previous treatments of the capture process have employed various approximation or simplifications. We present here an improved treatment of dark matter capture, valid for a wide dark matter mass range, that correctly incorporates all relevant physical effects. These include gravitational focusing, a fully relativistic scattering treatment, Pauli blocking, neutron star opacity and multi-scattering effects. We provide general expressions that enable the exact capture rate to be calculated numerically, and derive simplified expressions that are valid for particular interaction types or mass regimes and that greatly increase the computational efficiency. Our formalism is applicable to the scattering of dark matter from any neutron star constituents, or to the capture of dark matter in other compact objects.