论文标题

在PSI上使用冷冻自旋技术搜索MUON电偶极矩

Search for the muon electric dipole moment using frozen-spin technique at PSI

论文作者

Khaw, K. S., Adelmann, A., Backhaus, M., Berger, N., Daum, M., Giovannozzi, M., Kirch, K., Knecht, A., Papa, A., Petitjean, C., Renga, F., Sakurai, M., Schmidt-Wellenburg, P.

论文摘要

基本粒子中永久性电偶极矩的存在意味着电荷 - 超值对称性违规,因此可以帮助解释在我们宇宙中观察到的物质抗反感不对称性。在标准模型的背景下,基本颗粒的电偶极矩非常小。但是,许多标准模型扩展(例如超对称性)可以预测较大的电偶极矩。最近,由于MUON和电子磁异常的紧张局势以及B-Meson衰减中Lepton-Flovor违反普遍性的提示,Muon电偶极矩已成为一个特别感兴趣的话题。在本文中,我们在瑞士的Paul Scherrer Institute讨论了一项专门的工作,以使用3-T紧凑型电磁阀存储环和冷冻旋转技术来搜索MUON电动偶极矩。此技术可以达到$ 6 \ times10^{ - 23} $ $ $ e \ cdot $ cm的灵敏度,在Paul Scherrer Institute获得了一年的数据,$ p = 125 $ mev/$ c $ muon beam。这使我们能够使用MUON $ G-2 $存储环探测传统搜索无法达到的各种标准模型扩展。

The presence of a permanent electric dipole moment in an elementary particle implies Charge-Parity symmetry violation and thus could help explain the matter-antimatter asymmetry observed in our universe. Within the context of the Standard Model, the electric dipole moment of elementary particles is extremely small. However, many Standard Model extensions such as supersymmetry predict large electric dipole moments. Recently, the muon electric dipole moment has become a topic of particular interest due to the tensions in the magnetic anomaly of the muon and the electron, and hints of lepton-flavor universality violation in B-meson decays. In this article, we discuss a dedicated effort at the Paul Scherrer Institute in Switzerland to search for the muon electric dipole moment using a 3-T compact solenoid storage ring and the frozen-spin technique. This technique could reach a sensitivity of $6\times10^{-23}$ $e\cdot$cm after a year of data taking with the $p=125$ MeV/$c$ muon beam at the Paul Scherrer Institute. This allows us to probe various Standard Model extensions not reachable by traditional searches using muon $g-2$ storage rings.

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