UHE neutrinos from superconducting cosmic strings
Abstract
Superconducting cosmic strings naturally emit highly boosted charge carriers from cusps. This occurs when a cosmic string or a loop moves through a magnetic field and develops an electric current. The charge carriers and the products of their decay, including protons, photons and neutrinos, are emitted as a narrow jets with opening angle , where is the Lorentz factor of the cusp. The excitation of electric currents in strings occurs mostly in clusters of galaxies, which are characterized by magnetic fields G and a filling factor . Two string parameters determine the emission of the particles: the symmetry breaking scale , which for successful applications should be of order -- GeV, and the dimensionless parameter , which determines the maximum induced current as and the energy of emitted charge carriers as , where is the electric charge of a particle. For the parameters and mentioned above, the Lorentz factor reaches and the maximum particle energy can be as high as GeV. The diffuse fluxes of UHE neutrinos are close to the cascade upper limit, and can be detected by future neutrino observatories. The signatures of this model are: very high energies of neutrinos, in excess of eV, correlation of neutrinos with clusters of galaxies, simultaneous appearance of several neutrino-produced showers in the field of view of very large detectors, such as JEM-EUSO, and 10 TeV gamma radiation from the Virgo cluster. The flux of UHE protons from cusps may account for a large fraction of the observed events at the highest energies.
Cite
@article{arxiv.0901.0527,
title = {UHE neutrinos from superconducting cosmic strings},
author = {Veniamin Berezinsky and Ken D. Olum and Eray Sabancilar and Alexander Vilenkin},
journal= {arXiv preprint arXiv:0901.0527},
year = {2010}
}
Comments
24 pages, 2 figures, v2: Minor changes, matches the PRD version