Constraints on Primordial Black Holes by Distortions of Cosmic Microwave Background
arXiv:0801.3172 · doi:10.1103/PhysRevD.78.023004
Abstract
Possible influence of primordial black hole (PBH) evaporations on cosmic microwave background (CMB) is investigated. The spectrum distortions of CMB from the black-body spectrum are described by the chemical potential and the Compton parameter . From COBE/FIRAS limits on and , the power law index of primordial density fluctuations and the mass fraction of PBHs are constrained by employing the peak theory for the formation process of PBHs. Constraints set here are and in the thresholds of peaks and , respectively, for the PBH mass range between g and g, and and in the thresholds of peaks and , respectively, for the PBH mass range between and g, which correspond to the comoving scales between Mpc and Mpc. The constraint on the PBH fraction, which is the direct probe of the amplitude of density fluctuations in these scales, stays an almost same value as in these mass ranges. It is also found that, with these constraints, UV photons injected by PBH evaporations are unlikely ionize vast hydrogen atoms after recombination.
accepted for publication in Phys.Rev.D