Low-Energy Supernovae Bounds on Sterile Neutrinos

Fuente: arXiv
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Auteurs principaux: Chauhan, Garv, Horiuchi, Shunsaku, Huber, Patrick, Shoemaker, Ian M.
Format: Preprint
Publié: 2023
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author Chauhan, Garv
Horiuchi, Shunsaku
Huber, Patrick
Shoemaker, Ian M.
author_facet Chauhan, Garv
Horiuchi, Shunsaku
Huber, Patrick
Shoemaker, Ian M.
contents Sterile neutrinos can be produced through mixing with active neutrinos in the hot, dense core of a core-collapse supernova (SN). The standard bounds on the active-sterile mixing ($\sin^2 θ$) from SN arise from SN1987A energy-loss, requiring $E_{\text{loss}}<10^{52}~{\rm erg}$. In this work, we discuss a novel bound on sterile neutrino parameter space arising from the energy deposition through its decays inside the SN envelope. Using the observed underluminous SN IIP population, this energy deposition is constrained to be below $\sim 10^{50}~{\rm erg}$. Focusing on sterile neutrino mixing only with tau neutrino, for heavy sterile masses $m_s$ in the range $100$-$500$ MeV, we find stringent constraints on $\sin^2 θ_τ$ reaching two orders of magnitude lower than those from the SN1987A energy loss argument, {thereby probing the mixing angles required for Type-I seesaw mechanism}. Similar bounds will also be applicable to sterile mixing only with muons ($\sin^2 θ_μ$).
format Preprint
id arxiv_https___arxiv_org_abs_2309_05860
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Low-Energy Supernovae Bounds on Sterile Neutrinos
Chauhan, Garv
Horiuchi, Shunsaku
Huber, Patrick
Shoemaker, Ian M.
High Energy Physics - Phenomenology
Sterile neutrinos can be produced through mixing with active neutrinos in the hot, dense core of a core-collapse supernova (SN). The standard bounds on the active-sterile mixing ($\sin^2 θ$) from SN arise from SN1987A energy-loss, requiring $E_{\text{loss}}<10^{52}~{\rm erg}$. In this work, we discuss a novel bound on sterile neutrino parameter space arising from the energy deposition through its decays inside the SN envelope. Using the observed underluminous SN IIP population, this energy deposition is constrained to be below $\sim 10^{50}~{\rm erg}$. Focusing on sterile neutrino mixing only with tau neutrino, for heavy sterile masses $m_s$ in the range $100$-$500$ MeV, we find stringent constraints on $\sin^2 θ_τ$ reaching two orders of magnitude lower than those from the SN1987A energy loss argument, {thereby probing the mixing angles required for Type-I seesaw mechanism}. Similar bounds will also be applicable to sterile mixing only with muons ($\sin^2 θ_μ$).
title Low-Energy Supernovae Bounds on Sterile Neutrinos
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2309.05860