论文标题
暗物质轴和原始黑洞之间的相互作用
The Interplay between the Dark Matter Axion and Primordial Black Holes
论文作者
论文摘要
如果当轴心场中的振荡开始时,原始黑洞(PBH)就会主导早期宇宙的能量密度,我们表明QCD轴上的遗物丰度和预期的质量范围将被大大修改。由于QCD轴是暗物质(DM)的潜在候选者,因此我们将其称为DM轴。我们主要探索质量范围$(10^6-5 \ times 10^8)\,$ g的PBH。我们研究了DM轴的遗物丰度与PBHS的参数空间之间的关系。我们从数值上求解了在辐射和PBH主导的时期期间宇宙学演化的一组玻尔兹曼方程组,从而提供了早期宇宙的大量能量含量。我们进一步求解了DM轴向场运动方程,以获得其当前的丰度。除非相关的生产机制外,光QCD轴是通过通过鹰式机制蒸发PBH而产生的,并且可能占黑暗辐射的一部分(DR)。如果发现QCD轴,它将使我们深入了解早期宇宙,并探究以PBH为主时代的物理学。我们从通过PBH蒸发和热脱钩产生的DR轴上估算模型的边界,并在Peccei-Quinn对称性损坏的膨胀期内解释了异性外观边界。我们评估了针对可用CMB数据获得的结果,并评论引力波搜索的预测。我们简要说明PBH积聚的后果以及这可能会进一步增加宇宙学和Astroparticle物理模型的不确定性。
If primordial black holes (PBHs) had come to dominate the energy density of the early Universe when oscillations in the axion field began, we show that the relic abundance and expected mass range of the QCD axion would be greatly modified. Since the QCD axion is a potential candidate for dark matter (DM), we refer to it as the DM axion. We predominantly explore PBHs in the mass range $(10^6 - 5\times 10^8)\,$g. We investigate the relation between the relic abundance of DM axions and the parameter space of PBHs. We numerically solve the set of Boltzmann equations, that governs the cosmological evolution during both radiation and PBH-dominated epochs, providing the bulk energy content of the early Universe. We further solve the equation of motion of the DM axion field to obtain its present abundance. Alongside non-relativistic production mechanisms, light QCD axions are generated from evaporating PBHs through the Hawking mechanism and could make up a fraction of the dark radiation (DR). If the QCD axion is ever discovered, it will give us insight into the early Universe and probe into the physics of the PBH-dominated era. We estimate the bounds on the model from DR axions produced via PBH evaporation and thermal decoupling, and we account for isocurvature bounds for the period of inflation where the Peccei-Quinn symmetry is broken. We assess the results obtained against the available CMB data and we comment on the forecasts from gravitational wave searches. We briefly state the consequences of PBH accretion and the uncertainties this may further add to cosmology and astroparticle physics modeling.