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Reduction of Backscattering Induced Noise by Carrier Suppression in Waveguide-Type Optical Ring Resonator Gyro

机译:波导型光环谐振陀螺仪中载波抑制的反向散射感应噪声的减小

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摘要

Resonator micro optic gyro (RMOG) with a waveguide-type ring resonator is a promising candidate for applications requiring small, light and robust gyros. In optical passive ring resonator gyros, clockwise (CW) and counter clockwise (CCW) lightwaves are phase-modulated at different frequencies to reduce the backscattering induced noise. The effectiveness of this technique, however, is determined by the carrier suppression level. In this paper, the influence of the carrier suppression level on the gyro performance is examined experimentally for an RMOG system with a silica waveguide resonator. In our experiment, carrier suppression is applied onto both the CW and the CCW lightwaves at the same time to achieve higher total suppression. We show that carrier suppression as high as 100 dB can be achieved by optimizing the amplitude of the phase modulation. A bias stability of 0.46 /s in 50 seconds is demonstrated in an RMOG with a silica waveguide ring resonator having a ring length of 7.9 cm. This is the best result reported to date, to the best of our knowledge, for waveguide-type ring resonator gyros of this size.
机译:具有波导型环形谐振器的谐振器光学陀螺仪(RMOG)是需要小巧,轻巧且坚固的陀螺仪的应用的有希望的候选者。在光学无源环形谐振器陀螺仪中,顺时针(CW)和逆时针(CCW)光波以不同的频率进行相位调制,以减少反向散射引起的噪声。但是,该技术的有效性取决于载波抑制水平。在本文中,实验研究了带有石英波导谐振器的RMOG系统的载流子抑制水平对陀螺仪性能的影响。在我们的实验中,载波抑制同时应用于CW和CCW光波,以实现更高的总抑制。我们表明,通过优化相位调制的幅度可以实现高达100 dB的载波抑制。在具有二氧化硅波导环形谐振器且环长度为7.9 cm的RMOG中,在50秒内证明了0.46 / s的偏压稳定性。据我们所知,这是迄今报道的这种尺寸的波导型环形谐振器陀螺仪的最佳结果。

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