Supermassive Objects as Gamma-Ray Bursters
arXiv:astro-ph/9711020 · doi:10.1086/311477
Abstract
We propose that the gravitational collapse of supermassive objects ($ M\ga 10^4 M_\odot$), either as relativistic star clusters or as single supermassive stars (which may result from stellar mergers in dense star clusters), could be a cosmological source of -ray bursts. These events could provide the seeds of the supermassive black holes observed at the center of many galaxies. Collapsing supermassive objects will release a fraction of their huge gravitational binding energy as thermal neutrino pairs. We show that the accompanying neutrino/antineutrino annihilation-induced heating could drive electron/positron ``fireball'' formation, relativistic expansion, and associated -ray emission. The major advantage of this model is its energetics: supermassive object collapses are far more energetic than solar mass-scale compact object mergers; therefore, the conversion of gravitational energy to fireball kinetic energy in the supermassive object scenario need not be highly efficient, nor is it necessary to invoke directional beaming. The major weakness of this model is difficulty in avoiding a baryon loading problem for one dimensional collapse scenarios.
latex 16 pages, 1 figure, accepted by ApJ
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- Gamma-Ray Bursts, Ultra High Energy Cosmic Rays, and Cosmic Gamma-Ray Background
- Matter-affected neutrino oscillations in ordinary and mirror stars and their implications for gamma-ray bursts
- Nucleosynthesis in Baryon-Rich Outflows Associated With Gamma-Ray Bursts
- Neutrino Burst-Generated Gravitational Radiation From Collapsing Supermassive Stars
- Observing the Birth of Supermassive Black Holes with the Planned ICECUBE Neutrino Detector
- Possible Strong Gravitational Wave Sources for the LISA Antenna
- Exploring the Origin of Supermassive Black Holes with Coherent Neutrino Scattering