用CUORE进行BSM和暗物质搜索的最新进展

A. Branca
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引用次数: 0

摘要

低温地下罕见事件观测站(CUORE)是第一个达到一吨质量尺度的热量0 \nu\beta\beta 0νββ实验。该探测器位于意大利Gran Sasso国家实验室的地下,由988个TeO_22晶体组成,排列在19个塔的紧凑圆柱形结构中,在大约10 mK的基础温度下运行。CUORE从那以后收集了固态探测器获得的最大量的数据,并提供了^中0 \nu\beta\beta 0νβ衰变的最灵敏的测量。高曝光率,高能量分辨率,分段结构和无线电纯环境使CUORE成为广泛搜索罕见事件和对称违反的理想仪器。在CUORE中对低质量暗物质、太阳轴子、CPT和洛伦兹违反的新搜索,以及对2 {}\nu\beta\beta 2νββ谱的精确测量,有可能为标准模型的扩展提供新的见解和约束,以补充其他粒子物理搜索。在这篇文章中,讨论了在CUORE中BSM和暗物质搜索的最新进展。
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Recent progresses on BSM and dark matter searches with CUORE
The Cryogenic Underground Observatory for Rare Events (CUORE) is the first bolometric 0\nu\beta\beta0νββ experiment to reach the one-tonne mass scale. The detector, located underground at the Laboratori Nazionali del Gran Sasso in Italy, consists of 988 TeO_22 crystals arranged in a compact cylindrical structure of 19 towers, operating at a base temperature of about 10 mK. After beginning its first physics data run in 2017, CUORE has since collected the largest amount of data ever acquired with a solid state detector and provided the most sensitive measurement of 0\nu\beta\beta0νββ decay in ^{130}130Te ever conducted. The large exposure, sharp energy resolution, segmented structure and radio-pure environment make CUORE an ideal instrument for a wide array of searches for rare events and symmetry violations. New searches for low mass dark matter, solar axions, CPT and Lorenz violations, and refined measurements of the 2\nu\beta\beta2νββ spectrum in CUORE have the potential to provide new insight and constraints on extensions to the standard model complementary to other particle physics searches. In this contribution, the recent progress on BSM and dark matter searches in CUORE are discussed.
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