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Theoretical analyses of resonant frequency shift in anomalous dispersion enhanced resonant optical gyroscopes

机译:异常色散增强型共振光学陀螺仪中共振频率偏移的理论分析

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Rigorous expressions of resonant frequency shift (RFS) in anomalous dispersion enhanced resonant optical gyroscopes (ADEROGs) are deduced without making approximation, which provides a precise theoretical guidance to achieve ultra-sensitive ADEROGs. A refractive index related modification factor is introduced when considering special theory of relativity (STR). We demonstrate that the RFS will not be "infinitely large" by using critical anomalous dispersion (CAD) and negative modification does not exist, which make the mechanism of anomalous dispersion enhancement clear and coherent. Although step change of RFS will happen when the anomalous dispersion condition varies, the amplification of RFS is limited by attainable variation of refractive index in practice. Moreover, it is shown that the properties of anomalous dispersion will influence not only the amplification of RFS, but also the detection range of ADEROGs.
机译:无需近似即可推导异常色散增强共振光学陀螺仪(ADEROG)中共振频率偏移(RFS)的严格表达式,这为实现超灵敏ADEROG提供了精确的理论指导。在考虑相对论(STR)时,引入了与折射率相关的修正因子。我们证明,通过使用临界异常色散(CAD),RFS不会“无限大”,并且不存在负面修改,这使得异常色散增强的机制清晰且连贯。尽管当异常色散条件改变时,RFS会发生阶跃变化,但实际上RFS的放大受到折射率可达到的限制。而且,表明异常色散的性质不仅会影响RFS的放大,而且会影响ADEROG的检测范围。

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