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Dual Coupler Coupled Cavities Optical Gyroscope with Enhanced Performance

机译:具有增强性能的双耦合器耦合腔光学陀螺仪

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In recent years, the development of a reliable, low cost, miniaturized optical gyroscope has been a subject of research and development in the scientific and industrial communities. Since the sensitivity of the optical gyroscopes is reduced with the sensor footprint, multi-ring configurations, such as the coupled resonator optical waveguide (CROW) and the triple ring resonator configuration (TRR). were suggested to increase the sensitivity of the small foot print optical gyroscopes. In this work, a dual coupler coupled cavities configuration is suggested to be used in optical gyroscopes to enhance their performance. The configuration consists of two resonators directly coupled to each other. The passive cavity is a dual coupler ring resonator and is inserted in the main cavity such that the circulating light is fed back to the main cavity by the drop port of the coupled cavity. This leads to a smaller full width half maximum (FWHM) and hence better sensitivity. The passive resonator is studied to find analytical expressions for the output electric field and the effect of rotation on this field. The shot noise-limit sensitivity is calculated and compared to the conventional passive gyroscope in two cases: for a constant source power and for a constant detected power. The effect of propagation loss is also studied. An order of magnitude potential enhancement in the sensitivity is shown for silica-on-silicon technology.
机译:近年来,可靠,低成本,小型化的光学陀螺仪的开发已经成为科学界和工业界研究和开发的主题。由于光学陀螺仪的灵敏度随着传感器的占用面积而降低,因此需要采用多环配置,例如耦合谐振器光波导(CROW)和三环谐振器配置(TRR)。建议增加小脚印光学陀螺仪的灵敏度。在这项工作中,建议将双耦合器耦合腔配置用于光学陀螺仪以增强其性能。该配置由两个彼此直接耦合的谐振器组成。无源腔是双耦合器环形谐振器,并插入到主腔中,从而使循环光通过耦合腔的下降端口反馈到主腔。这导致较小的全宽半最大值(FWHM),因此具有更好的灵敏度。对无源谐振器进行了研究,以找到输出电场和旋转对该电场的影响的解析表达式。在两种情况下,计算散粒噪声极限灵敏度并将其与常规无源陀螺仪进行比较:对于恒定的源功率和恒定的检测功率。还研究了传播损耗的影响。对于硅上二氧化硅技术,显示出灵敏度提高了一个数量级。

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