arXiv:1603.00127·v2·High Energy Physics — Phenomenology
Gravitational Effects on Measurements of the Muon Dipole Moments
Abstract
If the technology for muon storage rings one day permits sensitivity to precession at the order of Hz, the local gravitational field of Earth can be a dominant contribution to the precession of the muon, which, if ignored, can fake the signal for a nonzero muon electric dipole moment (EDM). Specifically, the effects of Earth's gravity on the motion of a muon's spin is indistinguishable from it having a nonzero EDM of magnitude e cm in a storage ring with vertical magnetic field of 1 T, which is significantly larger than the expected upper limit in the Standard Model, e cm. As a corollary, measurements of Earth's local gravitational field using stored muons would be a unique test to distinguish classical gravity from general relativity with a bonafide quantum mechanical entity, i.e., an elementary particle's spin.
Comments: 5 pages; corrected calculation, qualitative results unchanged