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VIP - 2:电子泡利不相容原理的高灵敏度测试

VIP-2 -High-Sensitivity Tests on the Pauli Exclusion Principle for Electrons.

作者信息

Piscicchia Kristian, Marton Johann, Bartalucci Sergio, Bazzi Massimiliano, Bertolucci Sergio, Bragadireanu Mario, Cargnelli Michael, Clozza Alberto, Del Grande Raffaele, De Paolis Luca, Fiorini Carlo, Guaraldo Carlo, Iliescu Mihail, Laubenstein Matthias, Miliucci Marco, Milotti Edoardo, Napolitano Fabrizio, Pichler Andreas, Scordo Alessandro, Shi Hexi, Sirghi Diana Laura, Sirghi Florin, Sperandio Laura, Doce Oton Vazquez, Zmeskal Johann, Curceanu Catalina

机构信息

Centro Ricerche Enrico Fermi-Museo Storico della Fisica e Centro Studi e Ricerche "Enrico Fermi", Piazza del Viminale 1, I-00184 Roma, Italy.

INFN, Laboratori Nazionali di Frascati, Via E. Fermi 54, I-00044 Roma, Italy.

出版信息

Entropy (Basel). 2020 Oct 22;22(11):1195. doi: 10.3390/e22111195.

Abstract

The VIP collaboration is performing high sensitivity tests of the Pauli Exclusion Principle for electrons in the extremely low cosmic background environment of the underground Gran Sasso National Laboratory INFN (Italy). In particular, the VIP-2 Open Systems experiment was conceived to put strong constraints on those Pauli Exclusion Principle violation models which respect the so-called Messiah-Greenberg superselection rule. The experimental technique consists of introducing a direct current in a copper conductor, and searching for the X-rays emission coming from a forbidden atomic transition from the L shell to the K shell of copper when the K shell is already occupied by two electrons. The analysis of the first three months of collected data (in 2018) is presented. The obtained result represents the best bound on the Pauli Exclusion Principle violation probability which fulfills the Messiah-Greenberg rule.

摘要

VIP合作项目正在意大利格兰萨索国家实验室(INFN)的地下极低宇宙背景环境中,对电子的泡利不相容原理进行高灵敏度测试。特别是,VIP-2开放系统实验旨在对那些尊重所谓梅西耶-格林伯格超选择规则的泡利不相容原理违反模型施加严格限制。实验技术包括在铜导体中引入直流电,并在K壳层已被两个电子占据时,寻找从铜的L壳层到K壳层的禁戒原子跃迁所发出的X射线。本文给出了对2018年收集的前三个月数据的分析。所得结果代表了满足梅西耶-格林伯格规则的泡利不相容原理违反概率的最佳界限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecee/7711554/3c42a8b5b014/entropy-22-01195-g001.jpg

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