论文标题

簇的原始黑洞的微透镜约束

Microlensing constraints on clustered primordial black holes

论文作者

Petač, Mihael, Lavalle, Julien, Jedamzik, Karsten

论文摘要

通过其重力波(GW)发射发现黑孔二进制合并的发现,重新开放了令人兴奋的可能性,即至少部分地将暗物质制成了原始黑洞(PBHS)。但是,这种情况受到许多观察探针的挑战,这些探针在广泛的可行PBH质量上的相对PBH丰度设定了界限。在这些边界中,来自微透镜调查的界限导致质量最强的约束范围从$ \ sim 10^{ - 10} $到几个m $ _ {\ odot} $。该范围的上部精确地对应于质量窗口,由于早期宇宙中的QCD相变,应在其中增强PBH的形成,这使微透明探针尤为重要。但是,有人认为,考虑到PBH在小尺度上不可避免的聚类可以显着放松或完全消除这些界限。尽管已经详细研究了PBH聚类对GW事件率的影响,但尚未对其对微透镜事件速率的影响进行全面评估。在这封信中,我们解决了这个问题,并表明是由源自源自高斯初始曲率扰动而形成的pBHS引起的簇,不要改变当前的微透镜约束,因为它们不够紧凑。

The discovery of black-hole-binary mergers through their gravitational wave (GW) emission has reopened the exciting possibility that dark matter is made, at least partly, of primordial black holes (PBHs). However, this scenario is challenged by many observational probes that set bounds on the relative PBH abundance across a broad range of viable PBH masses. Among these bounds, the ones coming from microlensing surveys lead to the strongest constraints in the mass range from $\sim 10^{-10}$ to a few M$_{\odot}$. The upper part of this range precisely corresponds to the mass window inside which the formation of PBHs should be boosted due to the QCD phase transition in the early Universe, which makes the microlensing probes particularly important. However, it has been argued that taking into account the inevitable clustering of PBH on small scales can significantly relax or entirely remove these bounds. While the impact of PBH clustering on the GW event rate has been studied in detail, its impact on the microlensing event rate has not yet been fully assessed. In this Letter, we address this issue, and show that clusters arising from isocurvature perturbations, that originating from PBHs formed from Gaussian initial curvature perturbations, do not alter the current microlensing constraints, as they are not sufficiently compact.

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