Multimessenger search for electrophilic feebly interacting particles from supernovae

Author:

Luque Pedro De la Torre1ORCID,Balaji Shyam23ORCID,Carenza Pierluca1ORCID

Affiliation:

1. The Oskar Klein Centre, Department of Physics, Stockholm University, Stockholm 106 91, Sweden

2. Laboratoire de Physique Théorique et Hautes Energies (LPTHE), UMR 7589 CNRS & Sorbonne Université, 4 Place Jussieu, F-75252 Paris, France

3. Institut d’Astrophysique de Paris, UMR 7095 CNRS & Sorbonne Université, 98 bis boulevard Arago, F-75014 Paris, France

Abstract

We study MeV-scale electrophilic feebly interacting particles (FIPs), that may be abundantly produced in supernova explosions, escape the star and decay into electrons and positrons. This exotic injection of leptons in the Milky Way leaves an imprint in both photon and cosmic ray fluxes. Specifically, positrons lose energy and annihilate almost at rest with background electrons, producing photons with 511 keV energy. In addition, electrons and positrons radiate photons through bremsstrahlung emission and upscatter the low-energy galactic photon fields via the inverse Compton process generating a broad emission from x-ray to γ ray energies. Finally, electrons and positrons are directly observable in cosmic ray experiments. In order to describe the FIP-induced lepton injection in full generality, we use a model-independent parametrization which can be applied to a host of FIPs such as axionlike particles, dark photons and sterile neutrinos. Theoretical predictions are compared to experimental data to robustly constrain FIP-electron interactions with an innovative multimessenger analysis. Published by the American Physical Society 2024

Funder

European Cooperation in Science and Technology

Horizon 2020 Framework Programme

Sorbonne Université

H2020 European Research Council

Vetenskapsrådet

Swedish National Space Agency

Initiative Physique des Infinis

Swedish National Infrastructure for Computing

Publisher

American Physical Society (APS)

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