论文标题
原始黑洞对暗物质模型的影响
The Effects of Primordial Black Holes on Dark Matter Models
论文作者
论文摘要
我们通过在可能具有第二种动机的暗物质生产机制(例如冷冻,冷冻或重力产生)的情况下,通过将原始黑洞(PBH)蒸发蒸发而产生暗物质的影响。我们表明,PBHS与暗物质的替代来源之间的相互作用可能会导致独立于模型的修改,从而从每个生产机制中对所需的暗物质丰度,这反过来又影响了暗物质检测的前景。特别是,我们证明,对于冻结机制,冻结后的PBH蒸发需要比对热暗物质的规范值更大的暗物质颗粒横截面。对于由于与热水浴的微弱耦合而缺乏热量化的机制,我们表明PBH对暗物质的贡献导致了甚至更虚弱的耦合的要求。此外,我们表明,当大量最初的PBHS引起早期主导的时代时,仅PBH蒸发就无法解释当今的全部深色物质。在这种情况下,需要额外的生产机制,与在辐射主导的时期形成PBH并蒸发的情况相反。
We investigate the effects of producing dark matter by Hawking evaporation of primordial black holes (PBHs) in scenarios that may have a second well-motivated dark matter production mechanism, such as freeze-out, freeze-in, or gravitational production. We show that the interplay between PBHs and the alternative sources of dark matter can give rise to model-independent modifications to the required dark matter abundance from each production mechanism, which in turn affect the prospects for dark matter detection. In particular, we demonstrate that for the freeze-out mechanism, accounting for evaporation of PBHs after freeze-out demands a larger annihilation cross section of dark matter particles than its canonical value for a thermal dark matter. For mechanisms lacking thermalization due to a feeble coupling to the thermal bath, we show that the PBH contribution to the dark matter abundance leads to the requirement of an even feebler coupling. Moreover, we show that when a large initial abundance of PBHs causes an early matter-dominated epoch, PBH evaporation alone cannot explain the whole abundance of dark matter today. In this case, an additional production mechanism is required, in contrast to the case when PBHs are formed and evaporate during a radiation-dominated epoch.