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Conceptual design of the muonium-to-antimuonium conversion experiment (MACE)
DOI:10.1007/s41365-025-01876-0.png)
Abstract
En 中文
The spontaneous conversion of muonium to antimuonium is an interesting charged lepton flavor violation phenomenon that offers a sensitive probe for potential new physics and serves as a tool to constrain the parameter space beyond the Standard Model. The Muonium-to-Antimuonium Conversion Experiment (MACE) was designed to utilize a high-intensity muon beam, a Michel electron magnetic spectrometer, a positron transport system, and a positron detection system to either discover or constrain this rare process with a conversion probability of $$\mathcal {O}(10^{-13})$$ . This article presents an overview of the theoretical framework and a detailed description of the experimental design for muonium-to-antimuonium conversion.
Keywords:
Muonium
Lepton flavor violation
Muon beam
Drift chamber
Microchannel plate
Electromagnetic calorimeter
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