English

Quantum tunneling in the early universe: Stable magnetic monopoles from metastable cosmic strings

High Energy Physics - Phenomenology 2024-06-04 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

We present a novel mechanism for producing topologically stable monopoles (TSMs) from the quantum mechanical decay of metastable cosmic strings in the early universe. In an SO(10)SO(10) model this mechanism yields TSMs that carry two units (4π/e4\pi/e) of Dirac magnetic charge as well as some color magnetic charge which is screened. For a dimensionless string tension parameter Gμ109105G\mu \approx 10^{-9} - 10^{-5}, the monopoles are superheavy with masses of order 1015101710^{15} - 10^{17} GeV. Monopoles with masses of order 108101410^8 - 10^{14} GeV arise from metastable strings for GμG\mu values from 1022\sim 10^{-22} to 101010^{-10}. We identify the parameter space for producing these monopoles at an observable level with detectors such as IceCube and KM3NeT. For lower GμG\mu values the ultra-relativistic monopoles should be detectable at Pierre Auger and ANITA. The stochastic gravitational wave emission arises from metastable strings with Gμ109105G\mu\sim 10^{-9}-10^{-5} and should be accessible at HLVK and future detectors including the Einstein Telescope and Cosmic Explorer. An E6E_6 extension based on this framework would yield TSMs from the quantum mechanical decay of metastable strings that carry three units (6π/e6\pi/e) of Dirac magnetic charge.

Keywords

Cite

@article{arxiv.2402.03128,
  title  = {Quantum tunneling in the early universe: Stable magnetic monopoles from metastable cosmic strings},
  author = {George Lazarides and Rinku Maji and Qaisar Shafi},
  journal= {arXiv preprint arXiv:2402.03128},
  year   = {2024}
}

Comments

22 pages, 6 figures, 1 table, matches version accepted in JCAP