English

Observable windows for the QCD axion through $N_\text{eff}$

High Energy Physics - Phenomenology 2018-05-18 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

We show that when the QCD axion is directly coupled to quarks with cq/fμaqˉγμγ5qc_q/f \, \partial_\mu a \, \bar{q} \gamma^\mu \gamma^5 q, such as in DFSZ models, the dominant production mechanism in the early universe at temperatures 1GeVT100GeV1 \, {\rm GeV}\lesssim T \lesssim 100 \,{\rm GeV} is obtained via qqˉgaq \bar{q} \leftrightarrow g a and qgqaq g \leftrightarrow q a, where gg are gluons. Different heavy quarks qiq_i can produce a thermal axion background that decouples at a temperature TiT_i: (1) top quark at Tt100GeVT_t \lesssim 100 \, {\rm GeV} for f/ct3×108GeVf/c_t \lesssim 3\times 10^8 {\rm GeV}; (2) bottom quark at TbmbT_b \lesssim m_b, for f/cb8×107GeVf/c_b\lesssim 8\times 10^{7} {\rm GeV}; (3) charm quark at TcmcT_c \lesssim m_c for f/cc5×107GeVf/c_c \lesssim 5\times 10^{7} {\rm GeV}. Each of these cases corresponds to a contribution to the effective number of relativistic degrees of freedom, in the windows given by 0.027ΔNeff0.0310.027 \leq \Delta N_\text{eff}\leq 0.031, 0.037ΔNeff0.0390.037 \leq \Delta N_\text{eff} \leq 0.039 and 0.039ΔNeff0.039 \leq \Delta N_\text{eff}, respectively. These contributions are larger than the one obtained when thermalization happens only above the electroweak phase transition, ΔNeff0.027\Delta N_{\rm eff}\lesssim 0.027, 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.

Keywords

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

R2 v1 2026-06-22T23:48:56.899Z