Title :
Effect of Static Disorder on Sensitivity of Coupled Resonator Optical Waveguide Gyroscopes
Author :
Florio, Fred ; Kalantarov, Dmitriy ; Search, Christopher P.
Author_Institution :
Dept. of Phys. & Eng. Phys., Stevens Inst. of Technol., Hoboken, NJ, USA
Abstract :
Coupled resonator optical waveguides (CROWs) have shown theoretical promise as microoptical integrated gyroscopes with sensitivities exceeding comparably sized MEMS gyroscopes. Here, we analyze the effect of static disorder on the rotational sensitivity of a CROW gyroscope. Since CROWs consist of a one-dimensional array of evanescently coupled ring-shaped microresonators, disorder includes random variations of the resonator optical path length and couplings between them resulting from manufacturing errors. We show that the rotational sensitivity of the CROW gyro is relatively stable with respect to variations in the interresonator coupling. By contrast, even modest fluctuations in the resonators´ roundtrip optical path length result in substantially lower rotational sensitives. Finally, it is shown that while most random configurations of defects reduce the maximum sensitivity, there are particular configurations for which the rotation sensitivity is significantly higher than that of a CROW without disorder.
Keywords :
gyroscopes; integrated optics; micro-optomechanical devices; optical arrays; optical resonators; optical waveguides; CROW gyroscope; MEMS gyroscopes; coupled resonator optical waveguide gyroscope sensitivity; evanescently coupled ring-shaped microresonators; interresonator coupling; manufacturing errors; maximum sensitivity; microoptical integrated gyroscopes; one-dimensional array; random configurations; random variations; resonator optical path length; resonator roundtrip optical path length; rotation sensitivity; rotational sensitivity; static disorder; Couplings; Gyroscopes; Optical resonators; Optical sensors; Optical surface waves; Optical waveguides; Sensitivity; Gyroscopes; Sagnac effect; integrated optics devices;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2345580