English

Revisiting $^{129}$Xe electric dipole moment measurements applying a new global phase fitting approach

Atomic Physics 2021-08-11 v4 Nuclear Experiment

Abstract

By measuring the nuclear magnetic spin precession frequencies of polarized 129^{129}Xe and 3^{3}He, a new upper limit on the 129^{129}Xe atomic electric dipole moment (EDM) dA(129Xe) d_\mathrm{A} (^{129}\mathrm{Xe}) was reported in Phys. Rev. Lett. 123, 143003 (2019). Here, we propose a new evaluation method based on global phase fitting (GPF) for analyzing the continuous phase development of the 3^{3}He-129^{129}Xe comagnetometer signal. The Cramer-Rao Lower Bound on the 129^{129}Xe EDM for the GPF method is theoretically derived and shows the potential benefit of our new approach. The robustness of the GPF method is verified with Monte-Carlo studies. By optimizing the analysis parameters and adding data that could not be analyzed with the former method, we obtain a result of dA(129Xe)=1.1±3.6 (stat)±2.0 (syst)×1028 e cmd_\mathrm{A} (^{129}\mathrm{Xe}) = 1.1 \pm 3.6~\mathrm{(stat)} \pm 2.0~\mathrm{(syst)} \times 10^{-28}~ e~\mathrm{cm} in an unblinded analysis. For the systematic uncertainty analyses, we adopted all methods from the aforementioned PRL publication except the comagnetometer phase drift, which can be omitted using the GPF method. The updated null result can be interpreted as a new upper limit of dA(129Xe)<8.3×1028 e cm| d_\mathrm{A} (^{129}\mathrm{Xe}) | < 8.3 \times 10^{-28}~e~\mathrm{cm} at the 95\% C.L.

Keywords

Cite

@article{arxiv.2008.07975,
  title  = {Revisiting $^{129}$Xe electric dipole moment measurements applying a new global phase fitting approach},
  author = {T. Liu and K. Rolfs and I. Fan and S. Haude and W. Kilian and L. Li and A. Schnabel and J. Voigt and L. Trahms},
  journal= {arXiv preprint arXiv:2008.07975},
  year   = {2021}
}

Comments

Acknowledgement changed; Format changed and several wordings are modified to avoid potential confusions