English

Spectroscopy on the eEDM-sensitive states of ThF$^+$

Atomic Physics 2022-02-25 v1

Abstract

An excellent candidate molecule for the measurement of the electron's electric dipole moment (eEDM) is thorium monofluoride (ThF+^+) because the eEDM-sensitive state, 3Δ1^3\Delta_1, is the electronic ground state, and thus is immune to decoherence from spontaneous decay. We perform spectroscopy on X3Δ1X\,^3\Delta_1 to extract three spectroscopic constants crucial to the eEDM experiment: the hyperfine coupling constant, the molecular frame electric dipole moment, and the magnetic gg-factor. To understand the impact of thermal blackbody radiation on the vibrational ground state, we study the lifetime of the first excited vibrational manifold of X3Δ1X\,^3\Delta_1. We perform ab initio calculations, compare them to our results, and discuss prospects for using ThF+^+ in a new eEDM experiment at JILA.

Keywords

Cite

@article{arxiv.2202.01346,
  title  = {Spectroscopy on the eEDM-sensitive states of ThF$^+$},
  author = {Kia Boon Ng and Yan Zhou and Lan Cheng and Noah Schlossberger and Sun Yool Park and Tanya S. Roussy and Luke Caldwell and Yuval Shagam and Antonio J. Vigil and Eric A. Cornell and Jun Ye},
  journal= {arXiv preprint arXiv:2202.01346},
  year   = {2022}
}

Comments

9 pages, 8 figures