The emission of Gamma Ray Bursts as a test-bed for modified gravity
arXiv:1504.03900 · doi:10.1016/j.physletb.2015.09.048
Abstract
The extreme physical conditions of Gamma Ray Bursts can constitute a useful observational laboratory to test theories of gravity where very high curvature regimes are involved. Here we propose a sort of curvature engine capable, in principle, of explaining the huge energy emission of Gamma Ray Bursts. Specifically, we investigate the emission of radiation by charged particles non-minimally coupled to the gravitational background where higher order curvature invariants are present. The coupling gives rise to an additional force inducing a non-geodesics motion of particles. This fact allows a strong emission of radiation by gravitationally accelerated particles. As we will show with some specific model, the energy emission is of the same order of magnitude of that characterizing the Gamma Ray Burst physics. Alternatively, strong curvature regimes can be considered as a natural mechanism for the generation of highly energetic astrophysical events. Possible applications to cosmology are discussed.
4 pages, 1 figure, accepted for publication in Phys. Lett. B
References in corpus (5)
- Extended Theories of Gravity and their Cosmological and Astrophysical Applications
- The Hubble Diagram to Redshift >6 from 69 Gamma-Ray Bursts
- Covariant equations of motion for test bodies in gravitational theories with general nonminimal coupling
- Topological invariant quintessence
- Cosmography by GRBs : Gamma Ray Bursts as possible distance indicators
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