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Primordial Intermediate-mass Binary Black Holes as Targets for Space Laser Interferometers
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Primordial Intermediate-mass Binary Black Holes as Targets for Space Laser Interferometers
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Primordial black holes (PBHs) with log-normal mass spectrum with masses up to $\sim 10^4-10^5 M_\odot$ can be created after QCD phase transition in the early Universe at $z\sim 10^{12}$ by the modified Affleck-Dine baryogenesis. Using a model binary PBH formation, the expected detection rate of such binary intermediate-mass PBHs by the TianQin space laser interferometer is calculated to be from a few to hundreds events per year for the assumed parameters of the PBH log-normal mass spectrum and abundance consistent with LIGO-Virgo-KAGRA results. Distinctive features of such primordial IMBH mergings are vanishingly small effective spins, possible high redshifts $z>20$ and lack of association with gas-rich regions or galaxies.
Forward citations
Cited by 2 Pith papers
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Effect of post-recombination accretion on primordial binary black hole mergers within virialized dark matter halos
BHL-type post-recombination accretion can raise late three-body PBH merger rates enough for TianQin detections at f~10^{-6} and for LVK limits to bound delayed virialization.
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Intermediate-mass black holes and contribution to extragalactic background light from Population III stars in Milky Way-like galaxies
Semi-analytical simulation of Population III stars predicts ~130 unmerged IMBHs in Milky Way-like galaxies with negligible EBL contribution below 10^{-3} nW m^{-2} sr^{-1}.
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