A glass cantilever beam sensor combined with a spherical reflecting mirror for sensitivity enhancement

C. Liao, J. Tsai
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引用次数: 3

Abstract

The incorporation of a micro spherical reflecting mirror (MSRM) onto a cantilever beam sensor magnifies the optical deflection angle and therefore enhances the sensitivity of an optical sensing system. The curvature of the spherical reflecting mirror determines the angle magnification. Given a certain bending amount and a fixed distance between the cantilever and position sensing detector, the cantilever integrated with a micro spherical mirror with a smaller radius of curvature produces a larger optical deflection. Currently at an intermediate stage, our optical sensing system includes a traditional cantilever and a separate spherical mirror with a radius of curvature of 10 cm, which experimentally simulates a system with a MSRM-integrated cantilever beam. The experimental results show that the sensitivity is enhanced by 70%.
一个玻璃悬臂梁传感器结合了一个球面反射镜,以提高灵敏度
将微球面反射镜(MSRM)集成到悬臂梁传感器上,可以放大光学偏转角,从而提高光学传感系统的灵敏度。球面反射镜的曲率决定了角度放大倍数。在弯曲量一定且悬臂梁与位置传感探测器之间距离固定的情况下,与曲率半径较小的微球镜集成的悬臂梁产生较大的光学挠度。目前,我们的光学传感系统处于中间阶段,包括一个传统的悬臂梁和一个曲率半径为10 cm的独立球面反射镜,实验模拟了一个具有msrm集成悬臂梁的系统。实验结果表明,该方法的灵敏度提高了70%。
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