论文标题

无弹性暗物质散射的电磁信号

Electromagnetic Signals of Inelastic Dark Matter Scattering

论文作者

Baryakhtar, Masha, Berlin, Asher, Liu, Hongwan, Weiner, Neal

论文摘要

与标准模型的热接触中的光线深色扇区自然会产生观察到的遗物深色物质丰度,并且是广泛的实验搜索程序的目标。钥匙灯暗区模型是带有深色光子介质的伪dirac fermion。费尔米金激发态的动态经常被忽略。我们考虑在直接检测实验中产生有趣的电磁信号,其中产生了激发态的非平凡丰度,其随后产生了有趣的电磁信号。我们研究了填充激发态的三种机制:原始激发部分,一种在太阳中脱落的成分,以及在地球上脱落的成分。我们发现,原始激发态的分数丰度通常会耗尽到早期宇宙中指数的小部分。但是,这种丰度可以在当前的暗物质搜索中产生可观察的信号。 MEV尺度的暗物质具有热横截面和较高的黑物,可以通过在太阳激发后进行散落来探测。地球中GEV尺度的暗物质的碎片片段可能会引起当前和即将进行的陆地实验和X射线观测的信号。我们评论这些情况与新生1T的最近过剩的可能相关性。

Light dark sectors in thermal contact with the Standard Model naturally produce the observed relic dark matter abundance and are the targets of a broad experimental search program. A key light dark sector model is the pseudo-Dirac fermion with a dark photon mediator. The dynamics of the fermionic excited states are often neglected. We consider scenarios in which a nontrivial abundance of excited states is produced and their subsequent de-excitation yields interesting electromagnetic signals in direct detection experiments. We study three mechanisms of populating the excited state: a primordial excited fraction, a component up-scattered in the sun, and a component up-scattered in the Earth. We find that the fractional abundance of primordial excited states is generically depleted to exponentially small fractions in the early universe. Nonetheless, this abundance can produce observable signals in current dark matter searches. MeV-scale dark matter with thermal cross sections and higher can be probed by down-scattering following excitation in the sun. Up-scatters of GeV-scale dark matter in the Earth can give rise to signals in current and upcoming terrestrial experiments and X-ray observations. We comment on the possible relevance of these scenarios to the recent excess in XENON1T.

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