Core-collapse supernovae stymie secret neutrino interactions
Shashank Shalgar, Irene Tamborra, Mauricio Bustamante
Abstract
Open-access reader
Shashank Shalgar, Irene Tamborra, Mauricio Bustamante
Abstract
Open-access reader
Beyond-the-Standard-Model interactions of neutrinos among themselves---secret interactions---in the supernova core may prevent the shock revival, halting the supernova explosion. Besides, if supernova neutrinos en route to Earth undergo secret interactions with relic neutrinos, the neutrino burst reaching Earth may be down-scattered in energy, falling below the detection threshold. We probe secret neutrino interactions through supernova neutrinos and apply our findings to the supernova SN 1987A. We place the most stringent bounds on flavor-universal secret interactions occurring through a new mediator with mass between 10 MeV and 1 GeV.
OpenAlex reports 51 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Beyond-the-Standard-Model interactions of neutrinos among themselves---secret interactions---in the supernova core may prevent the shock revival, halting the supernova explosion. Besides, if supernova neutrinos en route to Earth undergo secret interactions with relic neutrinos, the neutrino burst reaching Earth may be down-scattered in energy, falling below the detection threshold. We probe secret neutrino interactions through supernova neutrinos and apply our findings to the supernova SN 1987A. We place the most stringent bounds on flavor-universal secret interactions occurring through a new mediator with mass between 10 MeV and 1 GeV.
Key concepts: Neutrino, Supernova, Physics, Type II supernova, Astrophysics, Core (optical fiber), Particle physics, Astronomy