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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Two-photon nonlinear spectroscopy of periodically trapped ultracold atoms in a cavity
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Two-photon nonlinear spectroscopy of periodically trapped ultracold atoms in a cavity

机译:腔中周期性俘获的超冷原子的双光子非线性光谱

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摘要

We study the transmission spectra of a Bose Einstein condensate (BEC) confined in an optical lattice interacting with two modes of a cavity via nonlinear two-photon transition. In particular, we show that the one-photon and two-photon cavity transmission spectra of a BEC are different. We found that when the BEC is in the Mott state, the usual normal mode splitting present in the one-photon transition is missing in the two-photon interaction. When the BEC is in the superfluid state, the transmission spectrum shows the usual multiple lorentzian structure. However the separation between the lorentzians for the two-photon case is much larger than that for the one-photon case. This study could form the basis for nondestructive high resolution Rydberg spectroscopy of ultracold atoms or two-photon spectroscopy of a gas of ultracold atomic hydrogen.
机译:我们研究了玻色爱因斯坦凝结物(BEC)的透射光谱,该物被限制在一个光学晶格中,该晶格通过非线性双光子跃迁与腔的两种模式相互作用。特别地,我们表明,BEC的单光子腔和双光子腔透射光谱是不同的。我们发现当BEC处于Mott状态时,在单光子跃迁中存在的通常的正常模式分裂在双光子相互作用中缺失。当BEC处于超流体状态时,透射光谱显示出通常的多洛伦兹结构。但是,对于两光子情况,洛伦兹之间的距离要比对单光子情况大。该研究可为超冷原子的无损高分辨率Rydberg光谱或超冷原子氢气体的双光子光谱奠定基础。

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