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Quantum corrected Q-ball dynamics

Xie, Qi-Xin; Saffin, Paul M.; Tranberg, Anders; Zhou, Shuang-Yong

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Authors

Qi-Xin Xie

PAUL SAFFIN PAUL.SAFFIN@NOTTINGHAM.AC.UK
Professor of Physics

Anders Tranberg

Shuang-Yong Zhou



Abstract

The physics of individual Q-balls and interactions between multiple Q-balls are well-studied in classical numerical simulations. Interesting properties and phenomena have been discovered, involving stability, forces, collisions and swapping of charge between different components of multi-Q-ball systems. We investigate these phenomena in quantum field theory, including quantum corrections to leading order in a 2PI coupling expansion, the inhomogeneous Hartree approximation. The presence of quantum modes and new decay channels allows the mean-field Q-ball to exchange charge with the quantum modes, and also alters the charge swapping frequencies of the composite Q-balls. It is also observed that the periodic exchanges between the mean-field and quantum modes tend to be quenched by collisions between Q-balls. We illustrate how the classical limit arises through a scaling of the Q-ball potential, making quantum corrections negligible for large-amplitude Q-balls.

Citation

Xie, Q.-X., Saffin, P. M., Tranberg, A., & Zhou, S.-Y. (2024). Quantum corrected Q-ball dynamics. Journal of High Energy Physics, 2024(1), Article 165. https://doi.org/10.1007/jhep01%282024%29165

Journal Article Type Article
Acceptance Date Jan 11, 2024
Online Publication Date Jan 26, 2024
Publication Date Jan 26, 2024
Deposit Date Jan 29, 2024
Publicly Available Date Jan 29, 2024
Journal Journal of High Energy Physics
Electronic ISSN 1029-8479
Publisher Springer Verlag
Peer Reviewed Peer Reviewed
Volume 2024
Issue 1
Article Number 165
DOI https://doi.org/10.1007/jhep01%282024%29165
Keywords Lattice Quantum Field Theory, Nonperturbative Effects, Solitons Monopoles and Instantons
Public URL https://nottingham-repository.worktribe.com/output/30411684
Publisher URL https://link.springer.com/article/10.1007/JHEP01(2024)165
Additional Information Received: 8 December 2023; Accepted: 11 January 2024; First Online: 26 January 2024

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