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Percolating cosmic string networks from kination

Conlon, Joseph P.; Copeland, Edmund J.; Hardy, Edward; González, Noelia Sánchez

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Authors

Joseph P. Conlon

Edward Hardy

Noelia Sánchez González



Contributors

Abstract

We describe a new mechanism, whose ingredients are realized in string compactifications, for the formation of cosmic (super)string networks. Oscillating string loops grow when their tension 𝜇 decreases with time. If 2𝐻 +˙𝜇/𝜇 <0, where 𝐻 is the Hubble parameter, loops grow faster than the scale factor and an initial population of isolated small loops (for example, produced by nucleation) can grow, percolate, and form a network. This condition is satisfied for fundamental strings in the background of a kinating volume modulus rolling toward the asymptotic large volume region of moduli space. Such long kination epochs are motivated in string cosmology by both the electroweak hierarchy problem and the need to solve the overshoot problem. The tension of such a network today is set by the final vacuum; for phenomenologically appealing large volume scenario vacua, this would lead to a fundamental string network with 𝐺𝜇 ∼10−10.

Citation

Conlon, J. P., Copeland, E. J., Hardy, E., & González, N. S. (2024). Percolating cosmic string networks from kination. Physical Review D, 110(8), Article 083537. https://doi.org/10.1103/physrevd.110.083537

Journal Article Type Article
Acceptance Date Oct 10, 2024
Online Publication Date Oct 31, 2024
Publication Date Oct 15, 2024
Deposit Date Apr 10, 2025
Publicly Available Date Jul 22, 2025
Journal Physical Review D
Print ISSN 2470-0010
Electronic ISSN 2470-0029
Publisher American Physical Society
Peer Reviewed Peer Reviewed
Volume 110
Issue 8
Article Number 083537
DOI https://doi.org/10.1103/physrevd.110.083537
Public URL https://nottingham-repository.worktribe.com/output/47555692
Publisher URL https://journals.aps.org/prd/abstract/10.1103/PhysRevD.110.083537

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