English

Improved limit on a temporal variation of $m_p/m_e$ from comparisons of Yb$^+$ and Cs atomic clocks

Atomic Physics 2014-12-01 v1

Abstract

Accurate measurements of different transition frequencies between atomic levels of the electronic and hyperfine structure over time are used to investigate temporal variations of the fine structure constant α\alpha and the proton-to-electron mass ratio μ\mu. We measure the frequency of the 2S1/22F7/2^2S_{1/2}\rightarrow {^2F_{7/2}} electric octupole (E3) transition in 171^{171}Yb+^+ against two caesium fountain clocks as f(E3)=642121496772645.36(25)f(E3) = 642\,121\,496\,772\,645.36(25)~Hz with an improved fractional uncertainty of 3.9×10163.9\times 10^{-16}. This transition frequency shows a strong sensitivity to changes of α\alpha. Together with a number of previous and recent measurements of the 2S1/22D3/2^2S_{1/2}\rightarrow {^2D_{3/2}} electric quadrupole transition in 171^{171}Yb+^+ and with data from other elements, a least-squares analysis yields (1/α)(dα/dt)=0.20(20)×1016/yr(1/\alpha)(d\alpha/dt)=-0.20(20)\times 10^{-16}/\mathrm{yr} and (1/μ)(dμ/dt)=0.5(1.6)×1016/yr(1/\mu)(d\mu/dt)=-0.5(1.6)\times 10^{-16}/\mathrm{yr}, confirming a previous limit on dα/dtd\alpha/dt and providing the most stringent limit on dμ/dtd \mu/dt from laboratory experiments.

Keywords

Cite

@article{arxiv.1407.4408,
  title  = {Improved limit on a temporal variation of $m_p/m_e$ from comparisons of Yb$^+$ and Cs atomic clocks},
  author = {N. Huntemann and B. Lipphardt and Chr. Tamm and V. Gerginov and S. Weyers and E. Peik},
  journal= {arXiv preprint arXiv:1407.4408},
  year   = {2014}
}

Comments

5 pages, 3 figures