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Analysis of Kerr effect in resonator fiber optic gyros with triangular wave phase modulation

机译:三角波相位调制的谐振器光纤陀螺的Kerr效应分析。

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We present an in-depth analysis of the Kerr effect in resonator fiber optic gyros (R-FOGs) based on triangular wave phase modulation. Formulations that relate gyro output to the rotation rate, the Kerr nonlinearity, and other fiber and gyro parameters are derived and used to study the effect of Kerr non-linearity on the gyro performance. Numerical investigation shows that the Kerr effect results in a non-zero gyro output even when the gyro is at stationary, which is interpreted as an error in the measurement of rotation rate. This error was found to increase as the frequencies of the two triangular phase modulations deviate from each other, and is not zero even if the intensities of the two counterpropagating beams are exactly the same. For fixed frequencies of the triangular phase modulations, there exists an optimal intensity splitting ratio for the two counterpropagating beams, which leads to zero gyro error. Calculation shows that the measurement error due to the Kerr effect for an R-FOG with a hollow-core photonic bandgap fiber as the fiber loop can be one to two orders of magnitude smaller than an R-FOG with a conventional single mode fiber loop.
机译:我们对基于三角波相位调制的谐振器光纤陀螺(R-FOG)中的Kerr效应进行了深入分析。得出了将陀螺输出与转速,Kerr非线性以及其他光纤和陀螺参数相关联的公式,并用于研究Kerr非线性对陀螺性能的影响。数值研究表明,即使陀螺仪处于静止状态,克尔效应也会导致陀螺仪输出不为零,这被解释为转速测量中的误差。发现该误差随着两个三角相位调制的频率彼此偏离而增加,并且即使两个反向传播的光束的强度完全相同,该误差也不为零。对于固定频率的三角相位调制,两个反向传播的光束存在一个最佳的强度分裂比,从而导致陀螺仪误差为零。计算表明,对于带有空心光子带隙光纤的R-FOG,由于光纤环路,其Kerr效应引起的测量误差可能比具有常规单模光纤环路的R-FOG小一到两个数量级。

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