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基于差分分束器的光学生微悬臂梁阵列的灵敏度增强。

Sensitivity enhancement of differential splitter-based transduction for photonic microcantilever arrays.

机构信息

Department of Electrical and Computer Engineering, Brigham Young University, Provo, UT 84602, USA.

出版信息

Nanotechnology. 2010 Apr 16;21(15):155501. doi: 10.1088/0957-4484/21/15/155501. Epub 2010 Mar 19.

Abstract

We report enhanced sensitivity for in-plane photonic transduction of static deflection of microscale cantilevers by modifying the mode structure of double-step rib waveguides used to capture light from the free end of waveguide microcantilevers. A measured sensitivity of 0.77 x 10( - 3) nm( - 1) is achieved, comparable to the best reported for the optical lever method and over two orders of magnitude larger than for piezoresistive transduction. The corresponding minimum detectable deflection is 59 pm for a 3.5 Hz measurement bandwidth.

摘要

我们通过修改用于从波导微悬臂梁自由端捕获光的双阶梯脊波导的模式结构,报告了对微尺度悬臂梁的静态挠度的面内光学生成的灵敏度的提高。实现了 0.77 x 10( - 3) nm( - 1) 的测量灵敏度,与光杠杆方法的最佳报道相当,并且比压阻转换大两个数量级以上。对于 3.5 Hz 的测量带宽,对应的最小可检测挠度为 59 pm。

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