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Gain enhanced Fano resonance in a coupled photonic crystal cavity-waveguide structure

机译:在耦合的光子晶体腔波导结构中获得增强的Fano共振

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摘要

Systems with coupled cavities and waveguides have been demonstrated as optical switches and optical sensors. To optimize the functionalities of these optical devices, Fano resonance with asymmetric and steep spectral line shape has been used. We theoretically propose a coupled photonic crystal cavity-waveguide structure to achieve Fano resonance by placing partially reflecting elements in waveguide. To enhance Fano resonance, optical gain material is introduced into the cavity. As the gain increases, the transmission line shape becomes steepened and the transmissivity can be six times enhanced, giving a large contrast by a small frequency shift. It is prospected that the gain enhanced Fano resonance is very useful for optical switches and optical sensors.
机译:具有耦合腔和波导的系统已被证明是光学开关和光学传感器。为了优化这些光学设备的功能,已使用具有不对称且陡峭的光谱线形的Fano谐振。我们从理论上提出了一种耦合光子晶体腔波导结构,通过在波导中放置部分反射元件来实现Fano共振。为了增强Fano共振,将光增益材料引入腔中。随着增益的增加,传输线的形状会变陡,并且透射率可以提高六倍,从而通过较小的频移提供较大的对比度。可以预见,增益增强的Fano谐振对于光开关和光传感器非常有用。

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