论文标题

RES-NOVA实验的KG规模的基于考古铅的低温探测器的表征

Characterization of a kg-scale archaeological lead-based cryogenic detectors for the RES-NOVA experiment

论文作者

Beeman, J. W., Benato, G., Bucci, C., Canonica, L., Carniti, P., Celi, E., Clemenza, M., D'Addabbo, A., Danevich, F. A., Di Domizio, S., Di Lorenzo, S., Dubovik, O. M., Iachellini, N. Ferreiro, Ferroni, F., Fiorini, E., Fu, S., Garai, A., Ghislandi, S., Gironi, L., Gorla, P., Gotti, C., Guillaumon, P. V., Helis, D. L., Kovtun, G. P., Mancuso, M., Marini, L., Olmi, M., Pagnanini, L., Pattavina, L., Pessina, G., Petricca, F., Pirro, S., Pozzi, S., Puiu, A., Quitadamo, S., Rothe, J., Scherban, A. P., Schönert, S., Solopikhin, D. A., Strauss, R., Tarabini, E., Tretyak, V. I., Tupitsyna, I. A., Wagner, V.

论文摘要

宇宙中最有活力的事件之一是核心折叠超新星(SNE),其中几乎所有恒星的结合能都以中微子的形式释放。这些颗粒是对恒星核心发生的过程的直接探针,并为重力崩溃提供了独特的见解。 Res-Nova将通过部署由考古铅制成的第一个吨尺度的低温探测器来彻底改变我们如何从天体物理来源检测中微子。 PB通过连贯的弹性中微子核散射(CE $ν$ ns)提供了最高的中微子相互作用横截面。这样的过程将使Res-Nova对所有中微子口味同样敏感。我们首次建议将考古PB用作敏感的目标材料,以在感兴趣的区域(\ textit {o}(1KeV))中实现超低背景水平。所有这些功能使第一个CM尺度中微子望远镜的部署成为可能,以研究天体物理学来源。在这项贡献中,我们将表征RES-NOVA的小规模原则检测器的辐射水平和性能,该检测器由pbwo $ _4 $ _4 $ crystal由考古PB制成,以低温检测器作用。

One of the most energetic events in the Universe are core-collapse Supernovae (SNe), where almost all the star's binding energy is released as neutrinos. These particles are direct probes of the processes occurring in the stellar core and provide unique insights into the gravitational collapse. RES-NOVA will revolutionize how we detect neutrinos from astrophysical sources, by deploying the first ton-scale array of cryogenic detectors made from archaeological lead. Pb offers the highest neutrino interaction cross-section via coherent elastic neutrino-nucleus scattering (CE$ν$NS). Such process will enable RES-NOVA to be equally sensitive to all neutrino flavors. For the first time, we propose to use archaeological Pb as sensitive target material in order to achieve an ultra-low background level in the region of interest (\textit{O}(1keV)). All these features make possible the deployment of the first cm-scale neutrino telescope for the investigation of astrophysical sources. In this contribution, we will characterize the radiopurity level and the performance of a small-scale proof-of-principle detector of RES-NOVA, consisting in a PbWO$_4$ crystal made from archaeological-Pb operated as cryogenic detector.

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