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A chip-based Brillouin laser gyroscope

机译:基于芯片的布里渊激光陀螺仪

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摘要

Inspired by the success of semiconductor-chip-based MEMs rotation sensors, there has long been interest in the possible realization of chip-based optical gyroscopes. Such devices could potentially be lightweight and rugged, while featuring some of the sensitivity advantages of Sagnac-based sensing devices. However, the performance of integrated-optical gyroscopes has lagged behind MEMS devices on account of difficult-to-achieve requirements for low-optical-loss chip-based waveguides and optical resonators. Here, a chip-based ring laser gyroscope is described. Its sensitivity is high enough to measure the Earth's rotation. The physical principles of its operation and its current performance will be reviewed.
机译:由基于半导体芯片的MEMS旋转传感器的成功的启发,在可能的基于芯片的光学陀螺仪的实现中存在长期感兴趣。这种装置可能是轻质和坚固的,同时具有基于SAGNAC的传感装置的一些灵敏度优势。然而,集成光学陀螺仪的性能是由于对基于低光损耗芯片的波导和光学谐振器的难以实现的要求而落后于MEMS器件。这里,描述了一种基于芯片的环形激光陀螺仪。它的灵敏度足够高,以测量地球的旋转。其运作的物理原则及其目前的绩效将进行审查。

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