基于光栅波导悬臂腔谐振的悬臂传感器阵列光学读出方案

P. Prakash, M. Renilkumar, C. Venkatesh, L. Faraone, G. A. Umama-Membreno, K. Silva, A. Keating, M. Martyniuk, J. Dell, M. Varma, N. Bhat, R. Pratap
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引用次数: 1

摘要

提出了一种基于光栅波导(GWG)谐振腔的微悬臂传感器阵列读出方案的设计与分析。该光学系统由微悬臂单片集成在光栅波导(GWG)附近,在硅光学实验台上实现。采用法布里-珀罗干涉仪模型对光学系统进行了数学分析,该模型在悬臂梁和光阑之间形成了一个有耗腔,并推导出了光功率传输随悬臂梁挠度变化的解析表达式。利用解析表达式估计的不同悬臂挠度下光学系统的光强透射率捕获了时域有限差分数值模型所表现出的基本特征。
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Optical read-out scheme based on grated waveguide cantilever cavity resonance for interrogation of cantilever sensor arrays
The design and analysis of an optical read-out scheme based on a grated waveguide (GWG) resonator for interrogating microcantilever sensor arrays is presented. The optical system consisting of a micro cantilever monolithically integrated in proximity to a grated waveguide (GWG), is realized in silicon optical bench platform. The mathematical analysis of the optical system is performed using a Fabry-Perot interferometer model with a lossy cavity formed between the cantilever and the GWG and an analytical expression is derived for the optical power transmission as a function of the cantilever deflection which corresponds to cavity width variation. The intensity transmission of the optical system for different cantilever deflections estimated using the analytical expression captures the essential features exhibited by a FDTD numerical model.
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