Search for high-energy neutrinos in coincidence with Fast Radio Bursts with the ANTARES neutrino telescope
A. Albert, M. Andr\'e, M. Anghinolfi, G. Anton, M. Ardid, J.-J., Aubert, J. Aublin, T. Avgitas, B. Baret, J. Barrios-Mart\'i, S. Basa, B., Belhorma, V. Bertin, S. Biagi, R. Bormuth, J. Boumaaza, S. Bourret, M.C., Bouwhuis, H. Br\^anza\c{s}, R. Bruijn, J. Brunner, J. Busto

TL;DR
This study searched for high-energy neutrinos coincident with Fast Radio Bursts using the ANTARES telescope, finding no such neutrinos and setting upper limits on neutrino fluence and energy release.
Contribution
First to perform a dedicated search for high-energy neutrinos coincident with FRBs using ANTARES, providing constraints on neutrino emission models.
Findings
No neutrino candidates detected in coincidence with 12 FRBs.
Upper limits established on neutrino fluence per burst.
Constraints placed on neutrino energy release from FRBs.
Abstract
In the past decade, a new class of bright transient radio sources with millisecond duration has been discovered. The origin of these so-called Fast Radio Bursts (FRBs) is still a great mystery despite the growing observational efforts made by various multi-wavelength and multi-messenger facilities. So far, many models have been proposed to explain FRBs but neither the progenitors nor the radiative and the particle acceleration processes at work have been clearly identified. In this paper, the question whether some hadronic processes may occur in the vicinity of the FRB source is assessed. If so, FRBs may contribute to the high energy cosmic-ray and neutrino fluxes. A search for these hadronic signatures has been done using the ANTARES neutrino telescope. The analysis consists in looking for high-energy neutrinos, in the TeV-PeV regime, spatially and temporally coincident with the…
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