English

High Quality Axion in Supersymmetric Models

High Energy Physics - Phenomenology 2023-01-04 v3 High Energy Physics - Theory

Abstract

In this work, we discuss how the use of the symmetries well motivated in physics beyond the Standard model (BSM) can guarantee the high quality axions. We avoid to introduce symmetries only useful for addressing the axion quality problem. Rather, we rely on symmetries well motivated by other issues in BSM: supersymmetry, U(1)BLU(1)_{\rm B-L} and the discrete R-symmetry ZNRZ_{NR}. We show that the interplay among these guarantees the high quality of the axion even for the gravitino mass and axion decay constant as large as m3/2=O(10)TeVm_{3/2}=\mathcal{O}(10){\rm TeV} and Fa=O(1015)GeVF_{a}=\mathcal{O}(10^{15}){\rm GeV} respectively. The key point of this work relies on the observation that the MSSM contribution to the mixed anomalies ZNR[SU(2)L]2Z_{NR}-[SU(2)_{L}]^{2} and ZNR[SU(3)c]2Z_{NR}-[SU(3)_{c}]^{2} is not enough for gauging ZNRZ_{NR} for N6N\neq6, which necessitates the introduction of new matter fields. We make the introduction to achieve zero mixed anomalies, which logically supports a desired large enough NN for ZNRZ_{NR}. This mechanism effectively makes ZNRZ_{NR} equal to U(1)RU(1)_{R} and thus offers a logically complete solution to the axion quality problem.

Keywords

Cite

@article{arxiv.2209.09290,
  title  = {High Quality Axion in Supersymmetric Models},
  author = {Gongjun Choi and Tsutomu T. Yanagida},
  journal= {arXiv preprint arXiv:2209.09290},
  year   = {2023}
}

Comments

27 pages,1 figure, 2 tables. v3: version accepted by JHEP

R2 v1 2026-06-28T01:41:20.126Z