arXiv · 1407.7354
Detuning Enhanced Cavity Spin Squeezing
Abstract
The unconditionally squeezing of the collective spin of an atomic ensemble in a laser driven optical cavity (I. D. Leroux, M. H. Schleier-Smith, and V. Vuletic, Phys. Rev. Lett 104, 073602 (2010)) is studied and analyzed theoretically. Surprisingly, we find that the largely detuned driving laser can improve the scaling of cavity squeezing from $S^{-2/5}$ to $S^{-2/3}$, where S is the total atomic spin. Moreover, we also demonstrate that the experimental imperfection of photon scattering into free space can be efficiently suppressed by detuning.
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Yan-Lei Zhang, Chang-Ling Zou, Xu-Bo Zou, Liang Jiang, Guang-Can Guo. 2014-07-28. Detuning Enhanced Cavity Spin Squeezing. https://doi.org/10.1103/physreva.91.033625
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