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SEARCH FOR ELECTRIC DIPOLE MOMENTS OF LIGHT IONS IN STORAGE RINGS

机译:储存环中轻离子的电偶极矩搜索

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The Standard Model (SM) of Particle Physics is not capable of accounting for the apparent matter-antimatter asymmetry of our Universe. Physics beyond the SM is required and is searched for by (i) employing highest energies (e.g., at the LHC), and (ii) striving for ultimate precision and sensitivity (e.g., in the search for electric dipole moments (EDMs)). Permanent EDMs of particles violate both time reversal (T) and parity (P) invariance, and are via the CPT-theorem also CP-violating. Finding an EDM would be a strong indication for physics beyond the SM, and pushing upper limits further provides crucial tests for any corresponding theoretical model, e.g., SUSY. Direct searches of proton and deuteron EDMs bear the potential to reach sensitivities beyond 10~(-29) e • cm. For an all-electric proton storage ring, this goal is pursued by the US-based srEDM collaboration [2], while the newly found Juelich-based JEDI collaboration [1] is pursuing an approach using a combined electric-magnetic lattice which shall provide access to the EDMs of protons, deuterons, and ~3He ions in the same machine. In addition, JEDI has recently proposed to perform a direct measurement of the proton and/or deuteron EDM at COSY using resonant techniques involving Wien filters.
机译:粒子物理学的标准模型(SM)无法解决我们宇宙的表观物质-反物质不对称性。 SM以外的物理是必不可少的,并且是通过(i)使用最高能量(例如在LHC上)以及(ii)力求最终的精度和灵敏度(例如在寻找电偶极矩(EDM)中)进行搜索。粒子的永久EDM违反了时间反转(T)和奇偶性(P)不变性,并且通过CPT定理也违反了CP。寻找电火花加工将是SM以外的物理学的有力指示,而将上限推高还可以为任何相应的理论模型(例如SUSY)提供关键测试。直接搜索质子和氘代EDM具有超过10〜(-29)e•cm的灵敏度。对于全电质子存储环,这一目标是由美国的srEDM合作[2]追求的,而新近成立的基于Juelich的JEDI合作[1]正在寻求一种使用组合的电磁格子的方法,该方法应提供可以在同一台机器上访问质子,氘核和〜3He离子的EDM。此外,JEDI最近建议使用涉及Wien滤波器的共振技术在COZY上直接测量质子和/或氘代EDM。

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