Effective Theory Approach for Axion Wormholes
Abstract
We employ the effective field theory approach to analyze the characteristics of Euclidean wormholes within axion theories. Using this approach, we obtain non-perturbative instantons in various complex scalar models with and without a non-minimal coupling to gravity, as well as models featuring the term for a range of coupling values. This yields a series of analytical expressions for the axion wormhole action, shedding light on the model parameters and field dependencies of contributions in both the ultraviolet and infrared domains. Consequently, model-dependent local operators that disrupt axion shift symmetries are generated at lower energy levels. This, in turn, provides crucial insights into the gravitational influences on the axion quality problem.
Cite
@article{arxiv.2310.11260,
title = {Effective Theory Approach for Axion Wormholes},
author = {Dhong Yeon Cheong and Seong Chan Park and Chang Sub Shin},
journal= {arXiv preprint arXiv:2310.11260},
year = {2024}
}
Comments
25 pages, 6 figures, v2: To appear in JHEP, added discussions on the cutoff scale and an appendix on the potential contribution