Biermann Peter L, Kusenko Alexander
Max-Planck Institut for Radioastronomy, Bonn, Germany.
Phys Rev Lett. 2006 Mar 10;96(9):091301. doi: 10.1103/PhysRevLett.96.091301. Epub 2006 Mar 8.
A sterile neutrino with a mass of several keV can account for cosmological dark matter, as well as explain the observed velocities of pulsars. We show that x rays produced by the decays of these relic sterile neutrinos can boost the production of molecular hydrogen, which can speed up the cooling of gas and the early star formation, which can, in turn, lead to a reionization of the Universe at a high enough redshift to be consistent with the Wilkinson Microwave Anisotropy Probe results.
质量为几千电子伏特的无菌中微子可以解释宇宙中的暗物质,也能解释观测到的脉冲星速度。我们表明,这些遗留无菌中微子衰变产生的X射线可以促进分子氢的产生,这可以加速气体冷却和早期恒星形成,进而在足够高的红移下导致宇宙再电离,从而与威尔金森微波各向异性探测器的结果相一致。