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High Energy Particles from Monopoles Connected by Strings

Astrophysics 2009-10-30 v2 High Energy Physics - Phenomenology

Abstract

Monopole-antimonopole pairs connected by strings and monopole-string networks with N>2N>2 strings attached to each monopole can be formed at phase transitions in the early universe. In such hybrid defects, monopoles accelerate under the string tension and can reach ultrarelativistic Lorentz factors, γ1\gamma\gg 1. We study the radiation of gauge quanta by accelerating monopoles. For monopoles with a chromomagnetic charge, we also discuss the high-energy hadron production through emission of virtual gluons and their subsequent fragmentation into hadrons. The relevant parameter for gauge boson radiation is M/aM/a, where MM is the boson mass and aa is the proper acceleration of the monopole. For MaM\ll a, the gauge bosons can be considered as massless and the typical energy of the emitted quanta is EγaE\sim\gamma a. In the opposite limit, MaM\gg a, the radiation power is exponentially suppressed and gauge quanta are emitted with a typical energy EγME\sim\gamma M in a narrow range ΔE/E(a/M)1/2\Delta E/E\sim (a/M)^{1/2}. Cosmological monopole-string networks can produce photons and hadrons of extremely high energies. For a wide range of parameters these energies can be much greater than the Planck scale.

Keywords

Cite

@article{arxiv.astro-ph/9703077,
  title  = {High Energy Particles from Monopoles Connected by Strings},
  author = {Veniamin Berezinsky and Xavier Martin and and Alexander Vilenkin},
  journal= {arXiv preprint arXiv:astro-ph/9703077},
  year   = {2009}
}

Comments

28 pages, ReVTex, 5 postscript figures. Minor changes, some references added. Submitted to Phys. Rev. D

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