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On-chip polarization-insensitive Fourier transform spectrometer

机译:片上极化不敏感傅里叶变换光谱仪

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摘要

Chip-scale monolithic Fourier transform spectrometers (FTSs) offer great potential for inexpensive, high-resolution, and robust spectroscopic applications in a wide variety of scenarios. Having attracted considerable attention, spatial heterodyne FTSs (SH-FTSs) are featured with a simple and stable configuration composed of an array of Mach-Zehnder interferometers (MZIs) with linearly increasing optical path differences. Owing to the strong waveguide birefringence, MZIs on the popular silicon-on-insulator platform are polarization-sensitive, raising the challenge of polarization control of incident light. We propose and. demonstrate a polarization-insensitive SH-FTS using a two-dimensional grating coupler to split an arbitrary state of polarization into two orthogonal polarization components that are both coupled into the TE mode but propagate in opposite directions in the arrayed MZIs. The two orthogonal polarization components are finally recombined in photodetection without polarization-dependent losses. An edge-coupling configuration using a polarization splitter-rotator is also proposed. (C) 2020 Optical Society of America
机译:芯片级单片傅里叶变换光谱仪(FTSS)在各种场景中提供廉价,高分辨率和强大的光谱应用的潜力。吸引了相当大的关注,空间外差FTS(SH-FTSs)具有简单且稳定的构造,由Mach-Zehnder干涉仪(MZIS)阵列组成,具有线性增加的光路差异。由于强烈的波导双折射,MzIS在流行的绝缘体平台上是极化敏感的,提高入射光极化控制的挑战。我们提出和。使用二维光栅耦合器展示偏振不敏感的SH-FTS,以将任意偏振状态分成两个正交偏振分量,其耦合到TE模式中,但在阵列的MZIS中以相反的方向传播。最终在光检测中重新组合两个正交的偏振分量,而无极化依赖性损失。还提出了使用偏振分离器旋转器的边缘耦合配置。 (c)2020美国光学学会

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