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Resonant Power Coupling in Asynchronous Microring-Assisted Directional Couplers

机译:异步微环辅助定向耦合器中的谐振功率耦合

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Resonant power exchange process in asynchronous microring-assisted directional couplers (MRDCs) is proposed as a new approach for achieving complete power coupling between dissimilar waveguides. Theoretical analysis based on the coupled mode theory and verified by finite difference time domain simulations shows that complete cross power transfer between the two bus waveguides of an MRDC can be obtained near the microring resonances. Moreover, this power exchange occurs over a much shorter coupling length than existing techniques such as grating-assisted couplers and adiabatic taper couplers. These asynchronous MRDC structures are also characterized by spectral responses with steep transition slopes, suggesting new device possibilities for applications such as power couplers, switches, modulators, and optical sensors.
机译:异步微环辅助定向耦合器(MRDCs)中的谐振功率交换过程被提出,作为一种实现不同波导之间完全功率耦合的新方法。基于耦合模式理论并经时域有限差分仿真验证的理论分析表明,可以在微环谐振附近获得MRDC的两个总线波导之间的完全交叉功率传输。而且,这种功率交换发生在比现有技术如光栅辅助耦合器和绝热锥度耦合器短得多的耦合长度上。这些异步MRDC结构的特征还在于具有陡峭过渡斜率的光谱响应,这为功率耦合器,开关,调制器和光学传感器等应用提供了新的器件可能性。

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