论文标题

用低温探测器的超新星和Supernova中微子检测的在线触发器

Online triggers for supernova and pre-supernova neutrino detection with cryogenic detectors

论文作者

Eller, Philipp, Iachellini, Nahuel Ferreiro, Pattavina, Luca, Shtembari, Lolian

论文摘要

Supernovae(SNE)是宇宙中最有活力的事件之一。对中微子的早期和迅速检测是一种实现对这些事件的首次多通信者观察的一次性机会。在这项工作中,我们介绍了在运行晚期低温检测器时(前SN)和SN期间检测中微子的前景。低温检测器技术的最新进展以及一致的弹性中微子核散射的发现为中微子检测提供了丰富的机会。该实验技术的出色能量分辨率与该检测通道的高横截面及其对所有中微子风味的同等敏感性的结合,可以实现高度敏感的CM级中微子望远镜,如新提出的RES-NOVA实验所致。我们介绍了一项详细的研究,介绍了前SN和SN中微子信号的检测及时性,并在不同类别的测试统计数据之间进行了直接比较。尽管良好的泊松测试在最佳条件下提供了一般最佳性能,但间距统计测试(RPS)的非参数递归产物更强大,非常适合触发没有特定先验知识的天体物理中微子信号。根据我们的统计测试,RES-NOVA实验能够以15 kpc距离的95%的成功率识别Sn中微子信号,而前SN信号则以480 pc的速度为480 PC,而战前时间为10 s。这些结果证明了RPS鉴定中微子信号的潜力以及RES-NOVA实验的物理范围。

Supernovae (SNe) are among the most energetic events in the universe still far from being fully understood. An early and prompt detection of neutrinos is a one-time opportunity for the realization of the first multi-messenger observation of these events. In this work, we present the prospects of detecting neutrinos produced before (pre-SN) and during a SN while running an advanced cryogenic detector. The recent advancements of the cryogenic detector technique and the discovery of coherent elastic neutrino-nucleus scattering offer a wealth of opportunities in neutrino detection. The combination of the excellent energy resolution of this experimental technique, with the high cross section of this detection channel and its equal sensitivity to all neutrino flavors enables the realization of highly sensitive cm-scale neutrino telescopes, as the newly proposed RES-NOVA experiment. We present a detailed study on the detection promptness of pre-SN and SN neutrino signals, with direct comparisons among different classes of test statistics. While the well-established Poisson test offers in general best performance under optimal conditions, the non-parametric Recursive Product of Spacing statistical test (RPS) is more robust and ideal for triggering astrophysical neutrino signals with no specific prior knowledge. Based on our statistical tests the RES-NOVA experiment is able to identify SN neutrino signals at a 15 kpc distance with 95% of success rate, and pre-SN signal as far as 480 pc with a pre-warn time of the order of 10 s. These results demonstrate the potential of RPS for the identification of neutrino signals and the physics reach of the RES-NOVA experiment.

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