论文标题
部分可观测时空混沌系统的无模型预测
The effect of outflows on CMB bounds from Primordial Black Hole accretion
论文作者
论文摘要
如果原始的黑洞(PBH)在自然界中存在,它们将不可避免地会在附近产生重质物质。反过来,随之而来的高能量辐射的发射可能会影响宇宙的热历史,从而可以用许多宇宙学可观察物(例如宇宙微波背景(CMB)各向异性)进行探测。但是,我们对PBHS背景下的积聚和辐射发射过程的理解仍处于起步阶段,并且非常大的理论不确定性影响了对PBH丰度的限制。在最先进的文献的基础上,在这项工作中,我们通过考虑流出的贡献来开发更现实的PBH积聚图片。具体而言,我们在不存在的各种积聚几何,电离模型和质量分布的PBH丰度上得出了CMB驱动的约束,并且在没有溢出引起的机械反馈和非热分排放的情况下。结果,我们表明,这种流出的存在引入了另外的不确定性层,在引用PBH丰度上的宇宙学约束时,需要考虑到这些不确定性,特别是在Ligo-Virgo-Kagra观测窗口中会带来重要的后果。
Should Primordial Black Holes (PBHs) exist in nature, they would inevitably accrete baryonic matter in their vicinity. In turn, the consequent emission of high-energy radiation could affect the thermal history of the universe to an extent that can be probed with a number of cosmological observables such as the Cosmic Microwave Background (CMB) anisotropies. However, our understanding of the accretion and radiation emission processes in the context of PBHs is still in its infancy, and very large theoretical uncertainties affect the resulting constraints on the PBH abundance. Building on state-of-the-art literature, in this work we take a step towards the development of a more realistic picture of PBH accretion by accounting for the contribution of outflows. Specifically, we derive CMB-driven constraints on the PBH abundance for various accretion geometries, ionization models and mass distributions in absence and in presence of mechanical feedback and non-thermal emissions due to the outflows. As a result, we show that the presence of such outflows introduces an additional layer of uncertainty that needs to be taken into account when quoting cosmological constraints on the PBH abundance, with important consequences in particular in the LIGO-Virgo-KAGRA observational window.