Speaker
Description
Advances in accelerator technology have led to significant
improvements in the quality of muon beams over the past decades.
Investigations of the muon and muonium enable precise measurements of
fundamental constants, as well as searches for new physics beyond the
Standard Model. The spontaneous conversion of muonium to antimuonium is
an interesting charged lepton flavor violation phenomenon 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 an
unprecedented precision. This talk will present progress of MACE and the
related areas.