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Direct frequency-comb spectroscopy of 6S1/26S_{1/2}-8S1/28S_{1/2} transitions of atomic cesium

Published 20 Jul 2017 in physics.atom-ph | (1707.06424v1)

Abstract: Direct frequency-comb spectroscopy is used to probe the absolute frequencies of 6S1/26S_{1/2}-8S1/28S_{1/2} two-photon transitions of atomic cesium in hot vapor environment. By utilizing the coherent control method of temporally splitting the laser spectrum above and below the two-photon resonance frequency, Doppler-free absorption is built in two spatially distinct locations and imaged for high-precision spectroscopy. Theoretical analysis finds that these transition lines are measured with uncertainty below 5×10<sup>−105\times10<sup>{-10}, mainly contributed from laser-induced AC Stark shift.

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