English

New limits on variation of the fine-structure constant using atomic dysprosium

Atomic Physics 2013-08-14 v1

Abstract

We report on the spectroscopy of radio-frequency transitions between nearly-degenerate, opposite-parity excited states in atomic dysprosium (Dy). Theoretical calculations predict that these states are very sensitive to variation of the fine-structure constant, α\alpha, owing to large relativistic corrections of opposite sign for the opposite-parity levels. The near degeneracy reduces the relative precision necessary to place constraints on variation of α\alpha competitive with results obtained from the best atomic clocks in the world. Additionally, the existence of several abundant isotopes of Dy allows isotopic comparisons that suppress common-mode systematic errors. The frequencies of the 754-MHz transition in 164^{164}Dy and 235-MHz transition in 162^{162}Dy were measured over the span of two years. Linear variation of α\alpha is found to be α˙/α=(5.8±6.9)×1017\dot{\alpha}/\alpha = (-5.8\pm6.9)\times10^{-17} yr1^{-1}, consistent with zero. The same data are used to constrain the dimensionless parameter kαk_\alpha, characterizing a possible coupling of α\alpha to a changing gravitational potential. We find that kα=(5.5±5.2)×107k_\alpha = (-5.5\pm5.2)\times10^{-7}, essentially consistent with zero and the best constraint to date.

Keywords

Cite

@article{arxiv.1304.6940,
  title  = {New limits on variation of the fine-structure constant using atomic dysprosium},
  author = {N. Leefer and C. T. M. Weber and A. Cingöz and J. R. Torgerson and D. Budker},
  journal= {arXiv preprint arXiv:1304.6940},
  year   = {2013}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-22T00:06:25.168Z