English

Improved limits for violations of local position invariance from atomic clock comparisons

Atomic Physics 2021-01-08 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology Quantum Physics

Abstract

We compare two optical clocks based on the 2^2S1/2(F=0)2_{1/2}(F=0)\to {}^2D3/2(F=2)_{3/2}(F=2) electric quadrupole (E2) and the 2^2S1/2(F=0)2_{1/2}(F=0)\to {}^2F7/2(F=3)_{7/2}(F=3) electric octupole (E3) transition of 171^{171}Yb+^{+} and measure the frequency ratio νE3/νE2=0.932829404530965376(32)\nu_{\mathrm{E3}}/\nu_{\mathrm{E2}}=0.932\,829\,404\,530\,965\,376(32). We determine the transition frequency νE3=642121496772645.10(8)\nu_{E3}=642\,121\,496\,772\,645.10(8) Hz using two caesium fountain clocks. Repeated measurements of both quantities over several years are analyzed for potential violations of local position invariance. We improve by factors of about 20 and 2 the limits for fractional temporal variations of the fine structure constant α\alpha to 1.0(1.1)×1018/yr1.0(1.1)\times10^{-18}/\mathrm{yr} and of the proton-to-electron mass ratio μ\mu to 8(36)×1018/yr-8(36)\times10^{-18}/\mathrm{yr}. Using the annual variation of the Sun's gravitational potential at Earth Φ\Phi, we improve limits for a potential coupling of both constants to gravity, (c2/α)(dα/dΦ)=14(11)×109(c^2/\alpha) (d\alpha/d\Phi)=14(11)\times 10^{-9} and (c2/μ)(dμ/dΦ)=7(45)×108(c^2/\mu) (d\mu/d\Phi)=7(45)\times 10^{-8}.

Keywords

Cite

@article{arxiv.2010.06620,
  title  = {Improved limits for violations of local position invariance from atomic clock comparisons},
  author = {R. Lange and N. Huntemann and J. M. Rahm and C. Sanner and H. Shao and B. Lipphardt and Chr. Tamm and S. Weyers and E. Peik},
  journal= {arXiv preprint arXiv:2010.06620},
  year   = {2021}
}

Comments

6 pages, 3 figures

R2 v1 2026-06-23T19:19:20.510Z