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High accuracy correction of blackbody radiation shift in an optical lattice clock

Atomic Physics 2013-01-01 v2 Optics Quantum Physics

Abstract

We have determined the frequency shift that blackbody radiation is inducing on the 5s25s^2 1^1S0_0 -- 5s5p5s5p 3^3P0_0 clock transition in strontium. Previously its uncertainty limited the uncertainty of strontium lattice clocks to 1×10161\times10^{-16}. Now the uncertainty associated to the black body radiation shift correction translates to 5×10185\times 10^{-18} relative frequency uncertainty at room temperature. Our evaluation is based on a measurement of the differential dc-polarizability of the two clock states and on a modeling of the dynamic contribution using this value and experimental data for other atomic properties.

Keywords

Cite

@article{arxiv.1208.2848,
  title  = {High accuracy correction of blackbody radiation shift in an optical lattice clock},
  author = {Thomas Middelmann and Stephan Falke and Christian Lisdat and Uwe Sterr},
  journal= {arXiv preprint arXiv:1208.2848},
  year   = {2013}
}

Comments

9 pages, 4 figures, including appendix with supplementary text. Version 2 with adjusted value of differential static polarizability due to field plate separation measurement