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Slot-waveguide-assisted temperature-independent mach-zehnder interferometer based optical filter

机译:基于缝隙波导的温度无关马赫曾德尔干涉仪

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摘要

A new design of temperature-independent Mach-Zehnder interferometer (MZI) based optical filter involving a combined use of silicon (Si) wire waveguides and slot waveguides is presented. The ratio of the path-length difference for the two types of waveguides is introduced to tune the thermal performance of the filtering wavelength. This ratio and its derived parameters render a high-level of flexibility for optimizing the design of interferometers based on optical path-length difference. By adjusting the path-length difference ratio for Si-wire waveguides and slot waveguides in the asymmetric arms of the MZI, an ideal temperature-independent optical filter can be obtained, while the modified interference order is enhanced. The proposed method is verified via a two-dimensional finite difference time domain simulation.
机译:提出了一种新的基于温度独立的马赫曾德尔干涉仪(MZI)的滤光器设计,其中包括硅(Si)线波导和缝隙波导的组合使用。引入两种波导的路径长度差之比,以调整滤波波长的热性能。该比率及其导出的参数为根据光程长度差优化干涉仪的设计提供了高度的灵活性。通过调整MZI非对称臂中Si线波导和缝隙波导的路径长度差比,可以获得理想的与温度无关的光学滤波器,同时提高了修改后的干涉级。通过二维时域有限差分仿真验证了该方法的有效性。

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