论文标题

采取更严格的对暗物质颗粒速度分布的不确定性的处理,以捕获星星

Towards a more rigorous treatment of uncertainties on the velocity distribution of dark matter particles for capture in stars

论文作者

Lopes, José, Lacroix, Thomas, Lopes, Ilídio

论文摘要

恒星中的暗物质(DM)捕获提供了丰富的现象学,可以在各种天体物理环境中探测各种各样的粒子DM场景。尽管有数十年的改进,以完善与捕获相关的可观察物的预测,并更好地量化天体物理和粒子物理学的不确定性,但DM的银河相位空间分布功能的实际影响被忽略了。在这项工作中,我们通过利用基于爱丁顿反转形式主义的自洽平衡相位模型来解决这个问题,并将这种方法扩展到速度空间中具有一定程度的各向异性的DM光晕。我们证明,与星系中的位置的DM速度分布的变化错误地考虑了两个因子之间的系统误差,尤其取决于目标星,DM候选质量和所涉及的相互作用的类型。此外,我们表明,诸如速度张量的各向异性等潜在的相位属性实际上起着重要的作用 - 以前被忽略 - 可以对捕获率和随后可观察物的预测产生重大影响。我们认为,像爱丁顿一样的方法是对银河系组成部分的运动学约束,实际上提供了一种可靠的近代方法,可以从相对于恒星中与DM捕获相关的观察物相关的预测相关的相位空间建模缩小不确定性。

Dark matter (DM) capture in stars offers a rich phenomenology that makes it possible to probe a wide variety of particle DM scenarios in diverse astrophysical environments. In spite of decades of improvements to refine predictions of capture-related observables and better quantify astrophysical and particle-physics uncertainties, the actual impact of the Galactic phase-space distribution function of DM has been overlooked. In this work, we tackle this problem by making use of self-consistent equilibrium phase-space models based on the Eddington inversion formalism and an extension of this method to a DM halo with some degree of anisotropy in velocity space. We demonstrate that incorrectly accounting for the variation of the DM velocity distribution with position in the Galaxy leads to a systematic error between a factor two and two orders of magnitude, depending in particular on the target star, the DM candidate mass and the type of interaction involved. Moreover, we show that underlying phase-space properties, such as the anisotropy of the velocity tensor, actually play an important part -- previously disregarded -- and can have a sizable impact on predictions of capture rates and subsequent observables. We argue that Eddington-like methods, which self-consistently account for kinematic constraints on the components of the Galaxy, actually provide a reliable next-to-minimal approach to narrow down uncertainties from phase-space modeling on predictions of observables related to DM capture in stars.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源