Meson Synchrotron Emission from Central Engines of Gamma-Ray Bursts with Strong Magnetic Fields
arXiv:astro-ph/9909286 · doi:10.1086/312348
Abstract
Gamma-ray bursts (GRBs) are presumed to be powered by still unknown central engines for the timescales in the range a few s. We propose that the GRB central engines would be a viable site for strong meson synchrotron emission if they were the compact astrophysical objects such as neutron stars or rotating black holes with extremely strong magnetic fields and if protons or heavy nuclei were accelerated to ultra-relativistic energies of order . We show that the charged scalar mesons like and heavy vector mesons like , which have several decay modes onto , could be emitted with high intensity a thousand times larger than photons through strong couplings to ultra-relativistic nucleons. These meson synchrotron emission processes eventually produce a burst of very high-energy cosmic neutrinos with . These neutrinos are to be detected during the early time duration of short GRBs.
12 pages, 4 figures. Accepted for publication in the Astrophysical Journal Letters
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- Collision of ultra-relativistic proton with strong magnetic field: production of ultra-high energy photons and neutrinos
- Searching for curvature pion radiation from protons in strongly magnetized pulsars