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A feasibility study for the detection of supernova explosions with an undersea neutrino telescope

机译:水下中微子望远镜探测超新星爆炸的可行性研究

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We study the potential of a very large volume underwater Mediterranean neutrino telescope to observe neutrinos from supernova (SN) explosions within our galaxy. The intense neutrino burst emitted in a SN explosion results in a large number of MeV neutrinos inside the instrumented volume of the neutrino telescope that can be detected (mainly) via the reaction v-bar_e + p→e~++n. In this study we simulated the response of the underwater neutrino telescope to the electron antineutrino flux predicted by the Garching model for SN explosions. We assumed that the neutrino telescope comprises 6160 direction sensitive optical modules, each containing 31 small photomultiplier tubes. Multiple coincidences between the photomultiplier tubes of the same optical module are utilized to suppress the noise produced by ~40K radioactive decays and to establish a statistical significant signature of the SN explosion.
机译:我们研究了非常大的水下地中海中微子望远镜观测银河系中超新星(SN)爆炸产生的中微子的潜力。在SN爆炸中发出的强烈的中微子爆发会在中微子望远镜的仪器体积内产生大量MeV中微子,这些(中)值可以通过v-bar_e + p→e〜++ n反应来检测。在这项研究中,我们模拟了水下中微子望远镜对由Garching模型预测的SN爆炸所产生的电子反中微子通量的响应。我们假设中微子望远镜包含6160个方向敏感的光学模块,每个模块包含31个小的光电倍增管。同一光学模块的光电倍增管之间的多个巧合被用来抑制约40K放射性衰变产生的噪声,并建立SN爆炸的统计学显着特征。

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