论文标题
从通货膨胀到黑洞合并再返回:重力波数据驱动的限制在通货膨胀方案上具有首要模型的原始黑洞,QCD时期
From inflation to black hole mergers and back again: Gravitational-wave data-driven constraints on inflationary scenarios with a first-principle model of primordial black holes across the QCD epoch
论文作者
论文摘要
最近,在大多数情况下,在大多数情况下,采用现象学PBH质量分布,最近的人口研究已经搜索了迄今为止由Ligo/Wigo/Kagra(LVK)检测到的重力波(GW)事件中原始黑洞(PBH)的亚群。然而,当在标准方案中从第一原则中得出这种人群时,在PBH形成时,宇宙状态的方程可能会强烈影响PBH的丰度和质量分布,这最终取决于宇宙学扰动的功率谱。在这里,我们改进了以前关于几个方面的人口研究:(i)我们采用了最先进的PBH形成模型,描述了整个QCD时期宇宙学扰动的崩溃; (ii)我们对包括PBH的GW数据进行了第一个贝叶斯多人群的推断,并直接使用功率谱参数而不是现象学分布; (iii)我们以LVK现象学模型对PBH方案进行严格面对面,其中描述了中子星和BH质量范围中的GWTC-3目录,也将PBH视为总事件的亚群。我们的结果证实,LVK观察结果阻止了大多数暗物质以出色的质量PBH的形式。我们发现,最合适的PBH模型可以占总事件的一小部分,特别是它可以自然地解释质量间隙中的事件。如果将较低的质量间隙事件GW190814解释为PBH二进制,我们预计LVK将在即将到来的O4和O5跑中检测到多达几个生物合并,其中1到$ \ 30 $降低质量间隙事件。最后,将最佳拟合功率谱图映射到超慢滚通货膨胀方案中,我们表明,后者预测LVK频段中可检测到的PBH合并,这是当前和未来的仪器可检测到的随机GW背景,并且可能包括Asteroid-Mass PBHS中的暗物质 - 暗物质质量。
Recent population studies have searched for a subpopulation of primordial black holes (PBHs) in the gravitational-wave (GW) events so far detected by LIGO/Virgo/KAGRA (LVK), in most cases adopting a phenomenological PBH mass distribution. When deriving such population from first principles in the standard scenario, however, the equation of state of the Universe at the time of PBH formation may strongly affect the PBH abundance and mass distribution, which ultimately depend on the power spectrum of cosmological perturbations. Here we improve on previous population studies on several aspects: (i) we adopt state-of-the-art PBH formation models describing the collapse of cosmological perturbations across the QCD epoch; (ii) we perform the first Bayesian multi-population inference on GW data including PBHs and directly using power spectrum parameters instead of phenomenological distributions; (iii) we critically confront the PBH scenario with LVK phenomenological models describing the GWTC-3 catalog both in the neutron-star and in the BH mass ranges, also considering PBHs as subpopulation of the total events. Our results confirm that LVK observations prevent the majority of the dark matter to be in the form of stellar mass PBHs. We find that the best fit PBH model can comprise a small fraction of the total events, in particular it can naturally explain events in the mass gaps. If the lower mass-gap event GW190814 is interpreted as a PBH binary, we predict that LVK should detect up to a few subsolar mergers and one to $\approx 30$ lower mass gap events during the upcoming O4 and O5 runs. Finally, mapping back the best-fit power spectrum into an ultra slow-roll inflationary scenario, we show that the latter predicts detectable PBH mergers in the LVK band, a stochastic GW background detectable by current and future instruments, and may include the entirety of dark matter in asteroid-mass PBHs.