论文标题
暗物质自我互动的半古典制度
The Semi-Classical Regime for Dark Matter Self-Interactions
论文作者
论文摘要
许多用于暗物质自我互动的粒子物理模型 - 促使人们针对无碰撞的无碰撞暗物质范式的长期挑战 - 属于半古典制度,与暗物质颗粒的de Broglie波长相比,相互作用的势能是长期的。在这项工作中,我们提出了半古典动量转移和粘度横截面的量子机械推导和新的分析公式,用于由Yukawa电位介导的自相互作用。我们的结果包括超出经典极限的领先量子校正,并允许可区分和相同的暗物质颗粒。我们的公式取代了从经典散射问题获得的动量转移横截面的众所周知的公式,这些公式经常用于自我互动暗物质的现象学研究。加上量子制度中横截面的先前近似公式,我们的新结果几乎可以完全完整地分析具有Yukawa电位的自我交织的参数空间。我们还讨论了结果的现象学含义,并为限制速度依赖性的自我互动提供了新的速度平均过程。我们的结果已在新发布的代码经典中实现。
Many particle physics models for dark matter self-interactions - motivated to address long-standing challenges to the collisionless cold dark matter paradigm - fall within the semi-classical regime, with interaction potentials that are long-range compared to the de Broglie wavelength for dark matter particles. In this work, we present a quantum mechanical derivation and new analytic formulas for the semi-classical momentum transfer and viscosity cross sections for self-interactions mediated by a Yukawa potential. Our results include the leading quantum corrections beyond the classical limit and allow for both distinguishable and identical dark matter particles. Our formulas supersede the well-known formulas for the momentum transfer cross section obtained from the classical scattering problem, which are often used in phenomenological studies of self-interacting dark matter. Together with previous approximation formulas for the cross section in the quantum regime, our new results allow for nearly complete analytic coverage of the parameter space for self-interactions with a Yukawa potential. We also discuss the phenomenological implications of our results and provide a new velocity-averaging procedure for constraining velocity-dependent self-interactions. Our results have been implemented in the newly released code CLASSICS.