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Micro-optoelectromechanical systems accelerometer based on intensity modulation using a one-dimensional photonic crystal

机译:基于一维光子晶体强度调制的微光机电系统加速度计

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摘要

In this paper, we propose what we believe is a novel sensitive micro-optoelectromechanical systems (MOEMS) accelerometer based on intensity modulation by using a one-dimensional photonic crystal. The optical sensing system of the proposed structure includes an air-dielectric multilayer photonic bandgap material, a laser diode (LD) light source, a typical photodiode (1550 nm) and a set of integrated optical waveguides. The proposed sensor provides several advantages, such as a relatively wide measurement range, good linearity in the whole measurement range, integration capability, negligible cross-axis sensitivity, high reliability, and low air-damping coefficient, which results in a wider frequency bandwidth for a fixed resonance frequency. Simulation results show that the functional characteristics of the sensor are as follows: a mechanical sensitivity of 119.21 nm/g, a linear measurement range of +/- 38g and a resonance frequency of 1444 Hz. Thanks to the above-mentioned characteristics, the proposed MOEMS accelerometer is suitable for a wide spectrum of applications, ranging from consumer electronics to aerospace and inertial navigation. (C) 2016 Optical Society of America
机译:在本文中,我们提出了我们认为是一种新颖的灵敏的微光机电系统(MOEMS)加速度计,该加速度计基于使用一维光子晶体进行强度调制。所提出的结构的光学感测系统包括空气电介质多层光子带隙材料,激光二极管(LD)光源,典型的光电二极管(1550 nm)和一组集成的光波导。所提出的传感器具有多个优点,例如相对较宽的测量范围,整个测量范围内的良好线性,积分能力,可忽略的横轴灵敏度,高可靠性和低空气阻尼系数,从而为传感器提供了更宽的频率带宽。固定的共振频率。仿真结果表明,该传感器的功能特性如下:机械灵敏度为119.21 nm / g,线性测量范围为+/- 38g,共振频率为1444 Hz。由于上述特性,建议的MOEMS加速度计适用于从消费电子产品到航空航天和惯性导航的广泛应用。 (C)2016美国眼镜学会

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