Santhanakrishnan T, Rajesh R, Awasthi Ram Lochan, Sreehari C V
Naval Physical and Oceanographic Laboratory, Thrikkakara P.O., Kochi, 682 021, Kerala, India.
Sci Rep. 2019 Mar 4;9(1):3397. doi: 10.1038/s41598-019-40270-w.
An optical method for simultaneous generation and detection of diffraction of light around the edges of photodetectors is reported in this paper along with its application for vibration sensing. The method makes use of an innovative illumination of light beam in which the laser light is made to incident at the interface between the active and opaque regions of a photodetector. Diffraction and induced interference occur together at the sensing area of the photodetector. The same photodetector responds to the dynamic intensity variations corresponding to the diffraction induced interference pattern and concurrently generates a dynamic electrical output. Comparing to the established diffraction techniques employing edges, the proposed method is simple to implement and extends the measurement applications. The experimental results obtained here verify the efficacy of the proposed method indicating its suitability for a novel class of sensors to be employed in practical circumstances.
本文报道了一种用于同时产生和检测光探测器边缘周围光衍射的光学方法及其在振动传感中的应用。该方法利用了一种创新的光束照明方式,使激光入射到光探测器有源区和不透明区之间的界面上。在光探测器的传感区域同时发生衍射和感应干涉。同一个光探测器对与衍射感应干涉图案相对应的动态强度变化作出响应,并同时产生动态电输出。与已有的利用边缘的衍射技术相比,该方法易于实现,并扩展了测量应用。这里获得的实验结果验证了所提方法的有效性,表明其适用于在实际环境中使用的一类新型传感器。