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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Ultranarrow resonance peaks in the transmission and reflection spectra of a photonic crystal cavity with Raman gain
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Ultranarrow resonance peaks in the transmission and reflection spectra of a photonic crystal cavity with Raman gain

机译:具有拉曼增益的光子晶体腔的透射和反射光谱中的超微共振峰

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摘要

The Raman gain of a probe light in a three-state A scheme placed into a defect of a one-dimensional photonic crystal is studied theoretically. We show that there exists a pump intensity range, where the transmission and reflection spectra of the probe field exhibit simultaneously occurring narrow peaks (resonances) whose position is determined by the Raman resonance. Transmission and reflection coefficients can be larger than unity at pump intensities on the order of tens of μW/cm~2. When the pump intensity is outside this region, the peak in the transmission spectrum turns into a narrow dip. The nature of narrow resonances is attributed to a drastic dispersion of the nonlinear refractive index in the vicinity of the Raman transition, which leads to a significant reduction in the group velocity of the probe wave.
机译:理论上研究了置于一维光子晶体缺陷中的三态A方案中探测光的拉曼增益。我们表明存在一个泵浦强度范围,在该范围内,探测场的透射光谱和反射光谱同时出现窄峰(共振),其位置由拉曼共振确定。在泵浦强度下,透射系数和反射系数可以大于几十个单位为μW/ cm〜2。当泵浦强度在该区域之外时,透射光谱中的峰变为窄谷。窄共振的性质归因于非线性折射率在拉曼跃迁附近的急剧分散,这导致探测波的群速度显着降低。

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