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Numerical Investigation and Optimization of a Mechano-Optical Sensor based on a Grated Waveguide Optical Cavity

机译:基于光栅波导光学腔的机械光学传感器的数值研究与优化

摘要

Recently we have proposed and demonstrated a novel and compact read-out principle for cantilever deflection with a grated waveguide optical cavity. The device, consisting of a microcantilever suspended above a Si3N4 grated waveguide (GWG), is a potentially highly sensitive mechano-optical sensor for gas sensing. In this report, we present results of a numerical investigation to optimize such an integrated GWG-cantilever platform using the bidirectional eigenmode propagation method. The results show that sensitivity of the device strongly depends on the grating depth, length of the grated section and the cantilever width.
机译:最近,我们提出并证明了一种新颖的,紧凑的读出原理,用于带有光栅波导光学腔的悬臂偏转。该设备由悬浮在Si3N4光栅波导(GWG)上方的微悬臂梁组成,是一种潜在的高度灵敏的用于气体传感的机械光学传感器。在这份报告中,我们提出了使用双向本征模传播方法优化这种集成GWG悬臂平台的数值研究结果。结果表明,器件的灵敏度在很大程度上取决于光栅的深度,光栅部分的长度和悬臂的宽度。

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