English

Nonperturbative structure in coupled axion sectors and implications for direct detection

High Energy Physics - Phenomenology 2025-08-20 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory Pattern Formation and Solitons

Abstract

Pairs of misalignment-produced axions with nearby masses can experience a nonlinear resonance that leads to enhanced direct and astrophysical signatures of axion dark matter. In much of the relevant parameter space, self-interactions cause axion fluctuations to become nonperturbative and to collapse in the early Universe. We investigate the observational consequences of such nonperturbative structure in this "friendly axion" scenario with 3+13+1 dimensional simulations. Critically, in a substantial fraction of parameter space we find that nonlinear dynamics work to equilibrate the abundance of the two axions, making it easier than previously expected to experimentally confirm the existence of a resonant pair. We also compute the gravitational wave emission from friendly axion dark matter; while the resulting stochastic background is likely undetectable for axion masses above 1022eV10^{-22} \, \text{eV}, the polarization of the cosmic microwave background does constrain possible hyperlight, friendly subcomponents. Finally, we demonstrate that dense, self-interaction--bound oscillons formed during the period of strong nonlinearity are driven by the homogeneous axion background, enhancing their lifetime beyond the in-vacuum expectation.

Keywords

Cite

@article{arxiv.2208.05501,
  title  = {Nonperturbative structure in coupled axion sectors and implications for direct detection},
  author = {David Cyncynates and Olivier Simon and Jedidiah O. Thompson and Zachary J. Weiner},
  journal= {arXiv preprint arXiv:2208.05501},
  year   = {2025}
}

Comments

19 pages, 8 figures; matches published version

R2 v1 2026-06-25T01:37:54.492Z