Gravitational lensing of transient neutrino sources by black holes
arXiv:0802.4251 · doi:10.1016/j.physletb.2008.04.016
Abstract
In this work we study gravitational lensing of neutrinos by Schwarzschild black holes. In particular, we analyze the case of a neutrino transient source associated with a gamma-ray burst lensed by a supermassive black hole located at the center of an interposed galaxy. We show that the primary and secondary images have an angular separation beyond the resolution of forthcoming km-scale detectors, but the signals from each image have time delays between them that in most cases are longer than the typical duration of the intrinsic events. In this way, the signal from different images can be detected as separate events coming from the very same location in the sky. This would render an event that otherwise might have had a low signal-to-noise ratio a clear detection, since the probability of a repetition of a signal from the same direction is negligible. The relativistic images are so faint and proximate that are beyond the sensitivity and resolution of the next-generation instruments.
9 pages; v2: improved version, new references added. Accepted for publication in Physics Letters B
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- Observable Signatures of RN Black Holes with Dark Matter Halos via Strong Gravitational Lensing and Constraints from EHT Observations
- Constraining the neutrino emission of gravitationally lensed Flat-Spectrum Radio Quasars with ANTARES data
- Gravitational scattering of spinning neutrinos by a rotating black hole with a slim magnetized accretion disk
- Strong deflection of massive particles via the geodesic deviation equation