English

Measurement of Linear Stark Interference in 199Hg

Atomic Physics 2015-05-20 v3

Abstract

We present measurements of Stark interference in the 61S0^1S_0 \rightarrow 63P1^3P_1 transition in 199^{199}Hg, a process whereby a static electric field EE mixes magnetic dipole and electric quadrupole couplings into an electric dipole transition, leading to EE-linear energy shifts similar to those produced by a permanent atomic electric dipole moment (EDM). The measured interference amplitude, aSIa_{SI} = (aM1+aE2)(a_{M1} + a_{E2}) = (5.8 ±\pm 1.5)×109\times 10^{-9} (kV/cm)1^{-1}, agrees with relativistic, many-body predictions and confirms that earlier central-field estimates are a factor of 10 too large. More importantly, this study validates the capability of the 199^{199}Hg EDM search apparatus to resolve non-trivial, controlled, and sub-nHz Larmor frequency shifts with EDM-like characteristics.

Keywords

Cite

@article{arxiv.1011.5445,
  title  = {Measurement of Linear Stark Interference in 199Hg},
  author = {T. H. Loftus and M. D. Swallows and W. C. Griffith and M. V. Romalis and B. R. Heckel and E. N. Fortson},
  journal= {arXiv preprint arXiv:1011.5445},
  year   = {2015}
}

Comments

4 pages, 4 figures, 1 table; revised in response to reviewer comments