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首页> 外文期刊>Optics and Photonics Journal >Dynamic Free-Spectral-Range Measurement for Fiber Resonator Based on Digital-Heterodyne Optical Phase-Locked Loop
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Dynamic Free-Spectral-Range Measurement for Fiber Resonator Based on Digital-Heterodyne Optical Phase-Locked Loop

机译:基于数字外差光学锁相环的光纤谐振器动态自由谱测量

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摘要

We propose a novel scheme, based on digital-heterodyne optical phase-locked loop with whole-fiber circuit, to dynamically measure the free-spectral-range of a fiber resonator. The optical phase-locked loop is established with a differential frequency-modulation module consists of a pair of acousto-optic modulators. The resonance-tracking loop is derived with the Pound-Drever-Hall technique for locking the heterodyne frequency of the OPLL on the frequency difference between adjacent resonance modes. A stable locking accuracy of about 7 × 10~(?9) and a dynamic locking accuracy of about 5 × 10~(?8) are achieved with the FSR of 8.155 MHz, indicating a bias stability of the resonator fiber optic gyro of about 0.1?/h with 10 Hz bandwidth. In addition, the thermal drift coefficient of the FSR is measured as 0.1 Hz/?C. This shows remarkable potential for realizing advanced optical measurement systems, such as the resonant fiber optic gyro, and so on.
机译:我们提出了一种基于具有全光纤电路的数字外差光学锁相环的新颖方案,以动态测量光纤谐振器的自由谱范围。 用差分频率调制模块建立光学锁相环由一对声光调制器组成。 谐振跟踪环路与庞大的DREST-HALL技术导出,用于锁定OPLL的外差频率对相邻谐振模式之间的频率差。 通过8.155 MHz的FSR实现约7×10〜(α9)和动态锁定精度的稳定锁定精度和约5×10〜(?8)的动态锁定精度,表示谐振器光纤陀螺陀螺的偏置稳定性 0.1?/ h具有10 Hz带宽。 另外,FSR的热漂移系数测量为0.1Hz /βc。 这显示了实现高级光学测量系统的显着潜力,例如谐振光纤陀螺仪等。

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