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Silicon Photonics for Microwave Photonics Applications

机译:微波光子学中的硅光子学

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摘要

We provide an overview of recent work on developing integrated microwave photonic subsystems in silicon photonics for generating chirped microwave waveforms as well as for providing optical true time delay. First, we describe on-chip spectral shapers based on Bragg gratings (BGs), including a distributed Fabry–Pérot cavity, a Michelson interferometer incorporating identical chirped BGs, and a Sagnac loop incorporating a chirped BG, for use in wavelength-to-time mapping systems. The performance of these on-chip spectral shapers is compared to those based on microring resonators as well as fiber or free-space configurations. Second, we consider the development of an index variable optical true time delay line (OTTDL) using subwavelength grating (SWG) waveguides. For SWG waveguides of the same length, incremental delays can be obtained by tailoring the group index via control over the duty cycle. We compare the performance of SWG waveguide OTTDLs to other length variable implementations in silicon.
机译:我们提供了有关在硅光子学中开发集成微波光子子系统以生成chi微波波形以及提供光学真实时间延迟的最新工作的概述。首先,我们描述基于布拉格光栅(BG)的片上频谱整形器,包括分布式Fabry–Pérot腔,结合了相同chi BG的迈克尔逊干涉仪以及结合了B BG的Sagnac环,用于波长转换。制图系统。这些片上频谱整形器的性能与基于微环谐振器以及光纤或自由空间配置的性能进行了比较。其次,我们考虑使用亚波长光栅(SWG)波导开发折射率可变的光学真实时间延迟线(OTTDL)。对于相同长度的SWG波导,可以通过控制占空比来调整组索引来获得增量延迟。我们将SWG波导OTTDL的性能与其他长度可变的硅实现方案进行了比较。

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