English

Testing Parity with Atomic Radiative Capture of $\mu^-$

High Energy Physics - Phenomenology 2012-07-03 v1 High Energy Physics - Experiment Nuclear Experiment Nuclear Theory Atomic Physics

Abstract

The next generation of "intensity frontier" facilities will bring a significant increase in the intensity of sub-relativistic beams of μ\mu^-. We show that the use of these beams in combination with thin targets of Z30Z\sim 30 elements opens up the possibility of testing parity-violating interactions of muons with nuclei via direct radiative capture of muons into atomic 2S orbitals. Since atomic capture preserves longitudinal muon polarization, the measurement of the gamma ray angular asymmetry in the single photon 2S1/22S_{1/2}-1S1/21S_{1/2} transition will offer a direct test of parity. We calculate the probability of atomic radiative capture taking into account the finite size of the nucleus to show that this process can dominate over the usual muonic atom cascade, and that the as yet unobserved single photon 2S1/22S_{1/2}-1S1/21S_{1/2} transition in muonic atoms can be detected in this way using current muon facilities.

Keywords

Cite

@article{arxiv.1205.6525,
  title  = {Testing Parity with Atomic Radiative Capture of $\mu^-$},
  author = {David McKeen and Maxim Pospelov},
  journal= {arXiv preprint arXiv:1205.6525},
  year   = {2012}
}

Comments

To appear in PRL

R2 v1 2026-06-21T21:11:14.450Z