arXiv · 1202.3159
Anomalous light shift through quantum jumps in quasi-resonant Rayleigh scattering
Abstract
An anomalous light shift in the precession of a ground-state Zeeman coherence is observed: the Larmor frequency increases with the strength of a drive that is blue (red) detuned from a transition out of the lower (upper) energy level. Our measurements are made on Rb 85 atoms traversing an optical cavity containing a few photons; shifts as large as 1% per photon are recorded. The anomalous shift arises from an accumulation of phase driven by quantum jumps. It is stochastic and accompanied by broadening.
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D. G. Norris, A. D. Cimmarusti, L. A. Orozco, P. Barberis-Blostein, H. J. Carmichael. 2012-02-14. Anomalous light shift through quantum jumps in quasi-resonant Rayleigh scattering. https://doi.org/10.1103/physreva.85.021804
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