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Manipulating light flow with one-dimensional photonic crystals of an electromagnetically induced transparency medium

机译:用电磁感应的透明介质的一维光子晶体操纵光流

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摘要

The band structures and equifrequency contours of one-dimensional photonic crystals (PCs), which consist of an electromagnetically induced transparency (EIT) medium and a common dielectric medium, can be dramatically changed by tuning the coupling field intensity (or coupling Rabi frequency, CRF) of the EIT medium. It is found that for a probe light at a fixed frequency, either positive or negative refraction in the EIT PC can be realized with a proper CRF. The behavior of a Gaussian beam (probe light) obliquely incident on such an EIT PC slab is simulated numerically. The probe light beam transmitted from the slab can be shifted transversely in a large range, and negative refraction enhances this effect. The present scenario can be applied in some areas such as quantum optical and photonic device designs.
机译:一维光子晶体(PCs)的能带结构和等频轮廓由电磁感应透明(EIT)介质和普通介电介质组成,可通过调节耦合场强度(或耦合拉比频率CRF)来显着改变)。发现对于固定频率的探照灯,可以通过适当的CRF实现EIT PC中的正折射或负折射。数值模拟了倾斜入射在这种EIT PC平板上的高斯光束(探测光)的行为。从平板传输的探测光束可以在较大范围内横向移动,负折射可增强此效果。本方案可以应用于某些领域,例如量子光学和光子器件设计。

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