On the viability of the QCD axion - dark energy transition
Abstract
This conference thesis summarizes my presentation at Tartu Tuorla Cosmology meeting based on a collaborative work with E.Nardi and C.Smarra \cite{Muursepp:2024mbb}. It is well known that a pseudo-Nambu Goldstone boson (pNGB) coupled to a confining gauge group obtains a non-zero contribution to its mass through instanton effects. At non-zero temperature, this manifests in temperature-dependent mass . If these particles come to dominate the energy density of the Universe in the non-relativistic regime they would accelerate the expansion of the Universe for , thus providing a dark energy (DE) component. In this work, we outline a scenario in which a pNGB presently undergoing confinement could realize such a scenario. Using energetic considerations we find that alone is not enough to produce the experimentally observed amount of DE. However, coupling to the QCD axion allows the transfer of energy from the QCD axion to the pNGB via non-adiabatic level-crossing thus reproducing the observed amount of dark matter (DM) and DE.
Keywords
Cite
@article{arxiv.2405.20478,
title = {On the viability of the QCD axion - dark energy transition},
author = {Kristjan Müürsepp},
journal= {arXiv preprint arXiv:2405.20478},
year = {2024}
}
Comments
Presentation of collaborative work with Enrico Nardi and Clemente Smarra, based on 2405.00090 [hep-ph] at Tartu-Tuorla cosmology conference, Borderless Universe on 08.05.2024