基于硅光子学的片上悬臂振动测量

V. Mere, Aneesh Dash, Rakshitha Kallega, R. Pratap, A. Naik, S. Selvaraja
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引用次数: 3

摘要

在本文中,我们展示了一个紧凑的基于硅光子学的基于片上光子光栅传感器的振动计。光栅传感器的工作原理是干涉,其中悬臂梁的运动在输出处被捕获为强度变化。与传统的激光多普勒测振仪相比,光栅传感器的优点是对校准误差的容忍度增加,因为光栅和悬臂梁都可以集成在一个芯片上。利用二维时域有限差分法对光栅参数进行优化,实现了对悬臂梁位移的最大灵敏度。实验证明了悬臂梁谐振模式的动态测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Silicon Photonics Based On-Chip Cantilever Vibration Measurement
In this paper, we demonstrate a compact Silicon photonics based vibrometer using an on-chip photonic grating-based sensor. The grating sensor works on the principle of interference where the motion of the cantilever is captured at the output as an intensity variation. The advantage of the grating sensor over conventional Laser Doppler vibrometer is increased tolerance to alignment errors as both the grating and the cantilever can be integrated on a single chip. The grating parameters are optimized using 2D-FDTD to achieve a maximum sensitivity to the displacement of a cantilever. Experimentally, we demonstrate dynamic measurements of a cantilever resonant mode.
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