Distinct signatures of spinning PBH domination and evaporation: doubly peaked gravitational waves, dark relics and CMB complementarity

Author:

Bhaumik NilanjandevORCID,Ghoshal AnishORCID,Jain Rajeev KumarORCID,Lewicki MarekORCID

Abstract

Abstract Ultra-low mass primordial black holes (PBH), which may briefly dominate the energy density of the universe but completely evaporate before the big bang nucleosynthesis (BBN), can lead to interesting observable signatures. In our previous work, we studied the generation of a doubly peaked spectrum of induced stochastic gravitational wave background (ISGWB) for such a scenario and explored the possibility of probing a class of baryogenesis models wherein the emission of massive unstable particles from the PBH evaporation and their subsequent decay contributes to the matter-antimatter asymmetry. In this work, we extend the scope of our earlier work by including spinning PBHs and consider the emission of light relativistic dark sector particles, which contribute to the dark radiation (DR) and massive stable dark sector particles, thereby accounting for the dark matter (DM) component of the universe. The ISGWB can probe the non-thermal production of these heavy DM particles, which cannot be accessible in laboratory searches. For the case of DR, we find a novel complementarity between the measurements of ∆Neff from these emitted particles and the ISGWB from PBH domination. Our results indicate that the ISGWB has a weak dependence on the initial PBH spin. However, for gravitons as the DR particles, the initial PBH spin plays a significant role, and only above a critical value of the initial spin parameter a*, which depends only on initial PBH mass, the graviton emission can be probed in the CMB-HD experiment. Upcoming CMB experiments such as CMB-HD and CMB-Bharat, together with future GW detectors like LISA and ET, open up an exciting possibility of constraining the PBHs parameter space providing deeper insights into the expansion history of the universe between the end of inflation and BBN.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Cited by 23 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Gravitational wave signatures of cogenesis from a burdened PBH;Journal of Cosmology and Astroparticle Physics;2024-09-01

2. Quantum effects on the evaporation of PBHs: contributions to dark matter;Journal of Cosmology and Astroparticle Physics;2024-07-01

3. Gravitational wave signals from early matter domination: interpolating between fast and slow transitions;Journal of Cosmology and Astroparticle Physics;2024-06-01

4. Gravitational wave signatures of no-scale supergravity in NANOGrav and beyond;Physics Letters B;2024-03

5. Superradiant leptogenesis;Journal of High Energy Physics;2024-02-15

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