Observable windows for the QCD axion through $N_\text{eff}$
Abstract
We show that when the QCD axion is directly coupled to quarks with , such as in DFSZ models, the dominant production mechanism in the early universe at temperatures is obtained via and , where are gluons. Different heavy quarks can produce a thermal axion background that decouples at a temperature : (1) top quark at for ; (2) bottom quark at , for ; (3) charm quark at for . Each of these cases corresponds to a contribution to the effective number of relativistic degrees of freedom, in the windows given by , and , respectively. These contributions are larger than the one obtained when thermalization happens only above the electroweak phase transition, , and are within reach of future CMB S4 experiments, thus opening an alternative window to detect the axion and to test the early universe at such temperatures.
Cite
@article{arxiv.1801.06090,
title = {Observable windows for the QCD axion through $N_\text{eff}$},
author = {Ricardo Z. Ferreira and Alessio Notari},
journal= {arXiv preprint arXiv:1801.06090},
year = {2018}
}
Comments
6 pages, 1 figure. Numerical solution of Boltzmann equation included, 1 new plot