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Electromagnetically induced transparency and lasing without inversion in three-level atoms imbedded in a frequency-dependent environment

机译:电磁感应的透明性和激光发射,不依赖于嵌入频率相关环境中的三能级原子

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摘要

The response of a three-level atomic system driven by a resonant coherent field acting on a transition near the photonic band-edge of a photonic band-gap material as well as the general case of a frequency-dependent reservoir is studied. The strong frequency dependence of the radiation mode spectral density on the scale of the driving field Rabi frequency is shown to lead to essential and controllable changes in the refractive index, as well as to effects of electromagnetically induced transparency and lasing without inversion. Such an effective dynamic control of the atomic response enables for applications in nonlinear optics and optical computing and communications.
机译:研究了由共振相干场驱动的三能级原子系统的响应,该共振相干场作用于光子带隙材料的光子带边缘附近的跃迁以及频率相关储层的一般情况。辐射模式光谱密度对驱动场拉比频率的尺度具有很强的频率依赖性,已显示出导致折射率的基本且可控的变化,以及电磁感应的透明性和激光发射而无反转的影响。这种对原子响应的有效动态控制可用于非线性光学,光学计算和通信中。

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