Coherent Scattering of Near-Resonant Light by a Dense Microscopic Cold Atomic Cloud.
نویسندگان
چکیده
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable to the wavelength of light. By interfering a laser beam tuned near an atomic resonance with the field scattered by the atoms, we observe a resonance with a redshift, a broadening, and a saturation of the extinction for increasing atom numbers. We attribute these features to enhanced light-induced dipole-dipole interactions in a cold, dense atomic ensemble that result in a failure of standard predictions such as the "cooperative Lamb shift". The description of the atomic cloud by a mean-field model based on the Lorentz-Lorenz formula that ignores scattering events where light is scattered recurrently by the same atom and by a microscopic discrete dipole model that incorporates these effects lead to progressively closer agreement with the observations, despite remaining differences.
منابع مشابه
Supplemental Material: Coherent scattering of near-resonant light by a Dense Microscopic Cold Atomic cloud
This Supplemental Material presents more details about the definition of the coherent transfer function S(ω) and the expressions of the laser field used in the modeling. It also derives the mean-field expression of the susceptibility for a multi-level alkali atom that we use in the Lorentz-Lorenz formula to calculate the field scattered by the cloud. Finally, we discuss the influence on the lin...
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ورودعنوان ژورنال:
- Physical review letters
دوره 116 23 شماره
صفحات -
تاریخ انتشار 2016