史上最高エネルギーのニュートリノ観測(The Highest Energy Neutrino Ever Observed)

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2025-02-20 マックス・プランク研究所

地中海に設置されたニュートリノ観測装置「KM3NeT」を用いて、マックス・プランク電波天文学研究所(MPIfR)を含む国際研究チームが、約220ペタ電子ボルト(PeV)というこれまでで最も高いエネルギーを持つ宇宙ニュートリノを検出しました。この発見は、宇宙において極限のエネルギーを持つニュートリノが生成されていることを示しています。その起源として、宇宙の深部に存在する超大質量ブラックホールが、極めて高速かつ高エネルギーの宇宙粒子を生成している可能性が考えられます。

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KM3NeTによる超高エネルギー宇宙ニュートリノの観測 Observation of an ultra-high-energy cosmic neutrino with KM3NeT

The KM3NeT Collaboration
Nature  Published:12 February 2025
DOI:https://doi.org/10.1038/s41586-024-08543-1

史上最高エネルギーのニュートリノ観測(The Highest Energy Neutrino Ever Observed)

Abstract

The detection of cosmic neutrinos with energies above a teraelectronvolt (TeV) offers a unique exploration into astrophysical phenomena1,2,3. Electrically neutral and interacting only by means of the weak interaction, neutrinos are not deflected by magnetic fields and are rarely absorbed by interstellar matter: their direction indicates that their cosmic origin might be from the farthest reaches of the Universe. High-energy neutrinos can be produced when ultra-relativistic cosmic-ray protons or nuclei interact with other matter or photons, and their observation could be a signature of these processes. Here we report an exceptionally high-energy event observed by KM3NeT, the deep-sea neutrino telescope in the Mediterranean Sea4, which we associate with a cosmic neutrino detection. We detect a muon with an estimated energy of <?XML:NAMESPACE PREFIX = “[default] http://www.w3.org/1998/Math/MathML” NS = “http://www.w3.org/1998/Math/MathML” />120−60+110 petaelectronvolts (PeV). In light of its enormous energy and near-horizontal direction, the muon most probably originated from the interaction of a neutrino of even higher energy in the vicinity of the detector. The cosmic neutrino energy spectrum measured up to now5,6,7 falls steeply with energy. However, the energy of this event is much larger than that of any neutrino detected so far. This suggests that the neutrino may have originated in a different cosmic accelerator than the lower-energy neutrinos, or this may be the first detection of a cosmogenic neutrino8, resulting from the interactions of ultra-high-energy cosmic rays with background photons in the Universe.

1701物理及び化学
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