Bulletin of the American Physical Society
2021 Fall Meeting of the APS Division of Nuclear Physics
Volume 66, Number 8
Monday–Thursday, October 11–14, 2021; Virtual; Eastern Daylight Time
Session FL: BSM Searches in Fundamental Symmetries IV: Muons and Light Mesons
2:00 PM–4:00 PM,
Tuesday, October 12, 2021
Room: Georgian
Chair: Emilie Passemar, Indiana University
Abstract: FL.00004 : Radiative muon capture mysteries and the search for μ- N(A,Z) --> e+ N'(A,Z-2)
2:36 PM–2:48 PM
Presenter:
Michael J MacKenzie
Authors:
Michael J MacKenzie
Pavel Murat
(Fermilab)
Collaboration:
On behalf of the Mu2e Collaboration
The conversion μ- N(A,Z) --> e+ N'(A,Z-2) is both a CLFV and LNV process which depends on off-diagonal lepton flavor matrix elements, not directly accessible by double beta decay searches. The strongest limits on this process come from the TRIUMF and SINDRUM II experiments. The dominant background to this search comes from the process of radiative muon capture (RMC), often described in a simplified form using the closure approximation (CA). CA has failed to describe the positron spectrum in all recently published searches by the TRIUMF and SINDRUM II experiments, where either ad hoc alterations to the model were added to better describe the experimental data, the poor description was ignored, or a limit was not published. The published data are in significant tension with the current models of RMC, making it impossible to distinguish between new physics and SM physics.
The Mu2e experiment aims to improve the sensitivity of searches for μ --> e conversion in the field of a nucleus by a factor of 10,000. In order to utilize the four orders of magnitude gain in sensitivity and the discovery potential of Mu2e, a better theoretical description of RMC is needed. We will discuss the tension between the data and predictions in the previous experimental searches, and the potential impact these discrepancies could have on the Mu2e search for μ- N(A,Z) --> e+ N'(A,Z-2) conversion.
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