首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Two-dimensional electromagnetically induced cross-grating in a four-level tripod-type atomic system
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Two-dimensional electromagnetically induced cross-grating in a four-level tripod-type atomic system

机译:四能级三脚架型原子系统中的二维电磁感应交叉光栅

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摘要

By using two orthogonal coupling standing-wave fields, we propose a scheme for a two-dimensional electromagnetically induced cross-grating (EICG) in a four-level tripod-type atomic system. Based on the electromagnetically induced transparency, the probe field will be diffracted and form the two-dimensional EICG through the interaction of the two coupling standing-wave fields. It is shown that the first-order diffraction intensity of the two-dimensional EICG depends observably on the detuning of the probe field and the Rabi frequencies of the two coupling standing-wave fields. The results may be used to develop novel photonic devices for use in quantum information processing, quantum networking and optical imaging.
机译:通过使用两个正交耦合驻波场,我们提出了一种在四能级三脚架型原子系统中的二维电磁感应交叉光栅(EICG)的方案。基于电磁感应的透明性,探测场将通过两个耦合驻波场的相互作用而衍射并形成二维EICG。结果表明,二维EICG的一阶衍射强度明显取决于探测场的失谐和两个耦合驻波场的拉比频率。该结果可用于开发用于量子信息处理,量子网络和光学成像的新型光子器件。

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