Modulating Photonic Crystal Structures to Generate Optical Frequency Combs

Henry Francis, Si Chen, Kaijun Che, Yun-Ran Wang, Chih-Hua Ho, M. Hopkinson, C. Jin, Chaoyuan Jin
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Abstract

A commonly used technique to generate an optical frequency comb (OFC) generation is to cascade intensity and phase electro-optical modulators [1]. Nanoscale all-optical devices can also achieve intensity and phase modulation, however the use of these modulators to generate OFCs has hitherto not been addressed. In this paper a mathematical model is introduced to simulate an all-optical modulator, based on temporal coupled mode theory. The techniques used in electro-optical modulators to generate an OFC are then extended to function on the nanoscale. Using this model, it is theoretically demonstrated that all-optical modulation of a nanophotonic device can generate an OFC.
调制光子晶体结构以产生光学频率梳
产生光频梳(OFC)的一种常用技术是级联强度和相位电光调制器[1]。纳米级全光器件也可以实现强度和相位调制,但是使用这些调制器来产生OFCs迄今尚未得到解决。本文介绍了基于时间耦合模理论的全光调制器仿真数学模型。电光调制器中用于产生OFC的技术随后被扩展到纳米尺度上的功能。利用该模型,从理论上证明了纳米光子器件的全光调制可以产生OFC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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