Detecting High-energy Neutrino Minibursts from Local Supernovae with Multiple Neutrino Observatories

IF 8.8 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Ali Kheirandish, Kohta Murase
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引用次数: 3

Abstract

Abstract Growing evidence from multiwavelength observations of extragalactic supernovae (SNe) has established the presence of dense circumstellar material in Type II SNe. Interaction between the SN ejecta and the circumstellar material should lead to diffusive shock acceleration of cosmic rays and associated high-energy emission. Observation of high-energy neutrinos along with the MeV neutrinos from SNe will provide unprecedented opportunities to understand unanswered questions in cosmic-ray and neutrino physics. We show that current and future neutrino detectors can identify high-energy neutrinos from an extragalactic SN in the neighborhood of the Milky Way. We present the prospects for detecting high-energy neutrino minibursts from SNe in known local galaxies, and demonstrate how the network of multiple high-energy neutrino detectors will extend the horizon for the identification of high-energy SN neutrinos. We also discuss high-energy neutrino emission from SN 2023ixf.
用多个中微子观测站探测来自局部超新星的高能中微子微爆发
来自星系外超新星(SNe)多波长观测的越来越多的证据已经确定在II型SNe中存在致密的星周物质。SN抛射物与星周物质之间的相互作用将导致宇宙射线的扩散激波加速和相关的高能发射。对高能中微子以及来自SNe的MeV中微子的观测将为理解宇宙射线和中微子物理学中尚未解决的问题提供前所未有的机会。我们表明,当前和未来的中微子探测器可以识别来自银河系附近星系外SN的高能中微子。我们提出了在已知的局部星系中探测来自SNe的高能中微子微爆发的前景,并演示了多个高能中微子探测器网络将如何扩展识别高能SN中微子的视界。我们还讨论了SN 2023ixf的高能中微子发射。
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来源期刊
Astrophysical Journal Letters
Astrophysical Journal Letters ASTRONOMY & ASTROPHYSICS-
CiteScore
14.10
自引率
6.30%
发文量
513
审稿时长
2-3 weeks
期刊介绍: The Astrophysical Journal Letters (ApJL) is widely regarded as the foremost journal for swiftly disseminating groundbreaking astronomical research. It focuses on concise reports that highlight pivotal advancements in the field of astrophysics. By prioritizing timeliness and the generation of immediate interest among researchers, ApJL showcases articles featuring novel discoveries and critical findings that have a profound effect on the scientific community. Moreover, ApJL ensures that published articles are comprehensive in their scope, presenting context that can be readily comprehensible to scientists who may not possess expertise in the specific disciplines covered.
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