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An Optical MEMS Accelerometer Based on a Two-Dimensional Photonic Crystal Add-Drop Filter

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In this paper, a novel optical microelectromechanical systems accelerometer sensor is proposed by using a two-dimensional photonic crystal add-drop filter which is relied on a wavelength modulation approach. The proposed… Click to show full abstract

In this paper, a novel optical microelectromechanical systems accelerometer sensor is proposed by using a two-dimensional photonic crystal add-drop filter which is relied on a wavelength modulation approach. The proposed optical sensing system consists of a laser diode light source, tunable add-drop filter based on ring resonator principal, photo-detector, and integrated waveguides. Simulation results show that the functional characteristics of the proposed sensor are as follows: mechanical sensitivity of 1.6 nm/g, linear measurement range of $-$156 to 156 g, optical sensitivity of 0.0756 nm/g, and first resonance frequency of 12.9 kHz. These functional characteristics make it very interesting in a wide spectrum of applications, ranging from consumer electronics to automotive and inertial navigation.

Keywords: drop filter; two dimensional; photonic crystal; add drop; dimensional photonic

Journal Title: Journal of Lightwave Technology
Year Published: 2017

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