Abstract
We investigate the interplay between Zeeman and light shifts in the transmission spectrum of an optically trapped, spin-polarized Rubidium atom. The spectral shape of the transmission changes from multiple, broad resonances to a single, narrow Lorentzian with a high resonant extinction value when we increase the magnetic field strength and lower the depth of the dipole trap. We present an experimental configuration well-suited for quantum information applications that enables not only efficient light-atom coupling, but also a long coherence time between ground state hyperfine levels.
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Steiner, M., Chin, Y. S., & Kurtsiefer, C. (2019). Transmission spectroscopy of a single atom in the presence of tensor light shifts. New Journal of Physics, 21(2). https://doi.org/10.1088/1367-2630/ab0431
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