Publication | Closed Access
Prospects for Optical Clocks with a Blue-Detuned Lattice
77
Citations
29
References
2009
Year
PhotonicsQuantum ScienceOptical MaterialsBlue-detuned LatticeEngineeringPhysicsMagic WavelengthOptical PropertiesNon-linear OpticOptical Transmission SystemApplied PhysicsOptical Lattice ClocksQuantum OpticElectro-optics DeviceOptoelectronicsClock TransitionOptical Computing
We investigated the properties of optical lattice clocks operated with a repulsive light-shift potential. The magic wavelength, where light-shift perturbation for the clock transition cancels, was experimentally determined to be 389.889(9) nm for 87Sr. The hyperpolarizability effects on the clock transition were investigated theoretically. With minimal trapping field perturbation provided by the blue-detuned lattice, the fractional uncertainty due to the hyperpolarizability effects was found to be 2x10;{-19} in the relevant clock transition.
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