Accuracy Evaluation of an Optical Lattice Clock with Bosonic Atoms
arXiv:physics/0703148 · doi:10.1364/OL.32.001812
Abstract
We report the first accuracy evaluation of an optical lattice clock based on the 1S0 - 3P0 transition of an alkaline earth boson, namely 88Sr atoms. This transition has been enabled using a static coupling magnetic field. The clock frequency is determined to be 429 228 066 418 009(32) Hz. The isotopic shift between 87Sr and 88Sr is 62 188 135 Hz with fractional uncertainty 5.10^{-7}. We discuss the conditions necessary to reach a clock accuracy of 10^{-17} or less using this scheme.
3 pages, 4 figures, uses ol.sty file
References in corpus (10)
- Multipolar theory of black-body radiation shift of atomic energy levels and its implications for optical lattice clocks
- Direct excitation of the forbidden clock transition in neutral 174Yb atoms confined to an optical lattice
- Sr lattice clock with inaccuracy below 10
- Optical atomic coherence at the one-second time scale
- An accurate optical lattice clock with 87Sr atoms
- Optical clocks based on ultra-narrow three-photon resonances in alkaline earth atoms
- Improved frequency measurement of a one-dimensional optical lattice clock with a spin-polarized fermionic Sr isotope
- Hyperpolarizability effects in a Sr optical lattice clock
- Dynamic cancellation of ac Stark shift for pulsed EIT/Raman optical lattice clocks
- Collisional shifts in optical-lattice atom clocks
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