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Optical Frequency Comb Generation via Cascaded Intensity and Phase Photonic Crystal Modulators

机译:通过级联强度和相位光子晶体调制器生成光频率梳

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摘要

Nanophotonics, driven by low processing power and high density integration, is appearing as the next logical step for microwave photonics. Optical frequency combs (OFCs), which play a vital role in integrated microwave photonics, have not yet generated using nano-structured devices. In this paper, we propose OFC generation based on all-optical modulation of nanophotonic structures. A theoretical model based on temporal coupled mode theory is developed to describe cascaded all-optical photonic crystal intensity and phase modulators. Using a modulation light with a sinusoidal waveform, a separate carrier light is modulated to generate an OFC. By manipulating the modulation power and device dimensions, a flat OFC that spans over a 600 GHz is delivered. The proposed system offers OFC generation with tunable comb line spacing using devices with high density integration capabilities.
机译:由低处理能力和高密度集成驱动的纳米光子学正在成为微波光子学的下一个合乎逻辑的步骤。在集成微波光子学中起着至关重要作用的光频率梳(OFC)尚未使用纳米结构器件生成。在本文中,我们提出了基于纳米光子结构的全光调制的OFC生成。建立了基于时间耦合模式理论的理论模型,用于描述级联全光子晶体强度和相位调制器。使用具有正弦波形的调制光,对单独的载波光进行调制以产生OFC。通过控制调制功率和器件尺寸,可提供跨越 600 GHz 的扁平 OFC。所提出的系统使用具有高密度集成能力的器件提供具有可调梳线间距的 OFC 生成。

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