GRB 221009A Gamma Rays from Radiative Decay of Heavy Neutrinos?
arXiv:2211.00634 · doi:10.1103/PhysRevLett.131.021002
Abstract
We consider a mechanism which allows to decrease attenuation of high energy gamma ray flux from gamma ray burst GRB 221009A. The mechanism is based on the existence of a heavy mostly sterile neutrino which mixes with active neutrinos. 's are produced in GRB in and decays via mixing with . They undergo the radiative decay on the way to the Earth. The usual exponential attenuation of gamma rays is lifted to an attenuation inverse in the optical depth. Various restrictions on this scenario are discussed. We find that the high energy events at and potentially can be explained if (i) the GRB active neutrino fluence is close to the observed limit, (ii) the branching ratio of is at least of the order 10%.
6 pages, 1 figure; v2: typos fixed, references added
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Cited by in corpus (6)
- Invisible Neutrino Decays as Origin of TeV Gamma Rays from GRB221009A
- Revisiting Lorentz invariance violation from GRB 221009A
- Towards a model of photon-axion conversion in the host galaxy of GRB 221009A
- Carpet-3 detection of a photon-like air shower with estimated primary energy above 100 TeV in a spatial and temporal coincidence with GRB 221009A
- Lorentz invariance violation from GRB221009A
- GRB 221009A: Spectral signatures based on ALPs candidates