???jsp.display-item.identifier??? http://earchive.tpu.ru/handle/11683/132663
???metadata.dc.title???: Testing primordial black holes as dark matter in supergravity from gravitational waves
???metadata.dc.contributor.author???: Aldabergenov, Ermek
Addazi, Andrea
Ketov, Sergey Vladimirovich
???metadata.dc.subject???: черные дыры; темная материя; супергравитация
???metadata.dc.date.issued???: 2021
???metadata.dc.identifier.citation???: Aldabergenov, E. Testing primordial black holes as dark matter in supergravity from gravitational waves / E. Aldabergenov, A. Addazi, S. V. Ketov // Physics Letters B. — 2021. — Vol. 814. — [136069, 5 p.].
???metadata.dc.description.abstract???: We explore the Gravitational Waves (GW) phenomenology of a simple class of supergravity models that can explain and unify inflation and Primordial Black Holes (PBH) as Dark Matter (DM). Our (modified) supergravity models naturally lead to a two-field attractor-type double inflation, whose first stage is driven by Starobinsky scalaron and the second stage is driven by another scalar belonging to a supergravity multiplet. The PBHs formation in our supergravity models is efficient, compatible with all observational constraints, and predicts a stochastic GW background. We compute the PBH-induced GW power spectrum and show that GW signals can be detected within the sensitivity curves of the future space-based GW interferometers such as LISA, DECIGO, TAIJI and TianQin projects, thus showing predictive power of supergravity in GW physics and their compatibility.
???metadata.dc.identifier.uri???: http://earchive.tpu.ru/handle/11683/132663
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