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首页> 外文期刊>Journal of Modern Optics >A photonic circuit for complementary frequency shifting, in-phase quadrature/single sideband modulation and frequency multiplication: analysis and integration feasibility
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A photonic circuit for complementary frequency shifting, in-phase quadrature/single sideband modulation and frequency multiplication: analysis and integration feasibility

机译:用于互补频率换档的光子电路,相位正交/单边带调制和频率倍增:分析和集成可行性

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摘要

A novel photonic integrated circuit architecture for implementing orthogonal frequency division multiplexing by means of photonic generation of phase-correlated sub-carriers is proposed. The circuit can also be used for implementing complex modulation, frequency up-conversion of the electrical signal to the optical domain and frequency multiplication. The principles of operation of the circuit are expounded using transmission matrices and the predictions of the analysis are verified by computer simulation using an industry-standard software tool. Non-ideal scenarios that may affect the correct function of the circuit are taken into consideration and quantified. The discussion of integration feasibility is illustrated by a photonic integrated circuit that has been fabricated using library' components and which features most of the elements of the proposed circuit architecture. The circuit is found to be practical and may be fabricated in any material platform that offers a linear electro-optic modulator such as organic or ferroelectric thin films hybridized with silicon photonics.
机译:提出了一种新的光子集成电路架构,用于通过相位相关子载波的光子生成实现正交频分复用。该电路还可用于实现复制调制,电信号的频率向上转换到光学域和频率倍增。使用传输矩阵阐述了电路的操作原理,并使用行业标准软件工具通过计算机仿真验证了分析的预测。考虑和量化可能影响电路正确功能的非理想场景。通过使用库组件制造的光子集成电路和具有所提出的电路架构的大多数元素来说明集成可行性的讨论。发现电路是实用的,并且可以在任何材料平台中制造,该材料平台提供线性电光调制器,例如用硅光子杂交的有机或铁电薄膜。

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