Axion Dark Matter Induced Cosmic Microwave Background $B$-modes
Abstract
It was known that isocurvature perturbation of a nearly massless cosmological axion field can lead to rotation of -mode polarization into -mode polarization in the cosmic microwave background (CMB) by the presence of a parity violating coupling of the field to the topological density of electromagnetism, resulting in a phenomenon known as anisotropic cosmic birefringence. In this {\em Letter}, we propose a new source of anisotropic cosmic birefringence induced by dark matter adiabatic density perturbation. If dark matter is ultralight axions that carry a coupling to photon, its adiabatic density fluctuations will induce anisotropic cosmic birefringence with a blue-tilted rotation power spectrum, thus generating CMB -mode polarization on sub-degree angular scales. Using current POLARBEAR and SPTPol -mode polarization data, we derive a constraint on the axion-photon coupling strength () and the axion mass (), . It is shown that the birefringence modes can dominate over CMB lensing modes at high , manifesting as an excess power for in future CMB lensing -mode searches. In addition, we derive the lensing-rotation cross correlation that can be a potential test to the present model.
Cite
@article{arxiv.1612.02104,
title = {Axion Dark Matter Induced Cosmic Microwave Background $B$-modes},
author = {Guo-Chin Liu and Kin-Wang Ng},
journal= {arXiv preprint arXiv:1612.02104},
year = {2017}
}
Comments
match the published version in PDU