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使用机械调制光反馈干涉仪测量微悬臂梁位移

Microcantilever Displacement Measurement Using a Mechanically Modulated Optical Feedback Interferometer.

作者信息

Azcona Francisco J, Jha Ajit, Yáñez Carlos, Atashkhooei Reza, Royo Santiago

机构信息

Centre for Sensors, Instruments and Systems Development (CD6)-UPC BarcelonaTech, Rambla St. Nebridi 10, Terrassa E-08222, Spain.

出版信息

Sensors (Basel). 2016 Jun 29;16(7):997. doi: 10.3390/s16070997.

Abstract

Microcantilever motion detection is a useful tool for the characterization of the physical, chemical and biological properties of materials. In the past, different approaches have been proposed and tested to enhance the behavior, size and simplicity of microcantilever motion detectors. In this paper, a new approach to measure microcantilever motion with nanometric resolution is presented. The proposed approach is based on the concept of mechanically-modulated optical feedback interferometry, a technique that has shown displacement measurement capabilities well within the nanometric scale and that, due to its size, compactness and low cost, may be a suitable choice for measuring nanometric motions in cantilever-like sensors. It will be shown that the sensor, in its current state of development, is capable of following a cantilever sinusoidal trajectory at different sets of frequencies ranging up to 200 Hz and peak to peak amplitudes up to λ / 2 with experimental resolutions in the λ / 100 range.

摘要

微悬臂梁运动检测是表征材料物理、化学和生物特性的一种有用工具。过去,人们提出并测试了不同方法来改善微悬臂梁运动探测器的性能、尺寸和简易性。本文提出了一种具有纳米分辨率的测量微悬臂梁运动的新方法。所提出的方法基于机械调制光反馈干涉测量法的概念,该技术已展现出在纳米尺度内良好的位移测量能力,并且由于其尺寸、紧凑性和低成本,可能是测量悬臂梁式传感器中纳米运动的合适选择。结果将表明,处于当前发展状态的该传感器能够在高达200 Hz的不同频率组以及高达λ / 2的峰峰值振幅下跟踪悬臂梁正弦轨迹,实验分辨率在λ / 100范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0e6/4970047/d2b11c273cfb/sensors-16-00997-g001.jpg

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