English

Secondary CMB temperature anisotropies from magnetic reheating

Cosmology and Nongalactic Astrophysics 2019-11-28 v2 General Relativity and Quantum Cosmology

Abstract

Spatially fluctuating primordial magnetic fields (PMFs) inhomogeneously reheat the Universe when they dissipate deep inside the horizon before recombination. Such an energy injection turns into an additional photon temperature perturbation. We investigate secondary cosmic microwave background (CMB) temperature anisotropies originated from this mechanism, which we call {\it inhomogeneous magnetic reheating}. We find that it can bring us information about non-linear coupling between PMFs and primordial curvature perturbations parametrized by bNLb_{\rm NL}, which should be important for probing the generation mechanism of PMFs. In fact, by using current CMB observations, we obtain an upper bound on the non-linear parameter as log(bNL(Bλ/nG)2)36.5nB94.0\log (b_{\rm NL} (B_{\lambda}/{\rm nG})^2) \lesssim {-36.5n_{B} - 94.0} with BλB_{\lambda} and nBn_{\rm B} being a magnetic field amplitude smoothed over λ=1  Mpc\lambda=1\; {\rm Mpc} scale and a spectral index of the PMF power spectrum, respectively. Our constraints are far stronger than a previous forecast based on the future CMB spectral distortion anisotropy measurements because inhomogeneous magnetic reheating covers a much wider range of scales, i.e., 1  Mpc1k1015  Mpc11\; {\rm Mpc}^{-1} \lesssim k\lesssim 10^{15}\; {\rm Mpc}^{-1}.

Keywords

Cite

@article{arxiv.1904.09121,
  title  = {Secondary CMB temperature anisotropies from magnetic reheating},
  author = {Shohei Saga and Atsuhisa Ota and Hiroyuki Tashiro and Shuichiro Yokoyama},
  journal= {arXiv preprint arXiv:1904.09121},
  year   = {2019}
}

Comments

10 pages, 3 figures