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Investigation on Dispersion in the Active Optical Waveguide Resonator

机译:有源光波导谐振器中色散的研究

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Introducing active gain in the optical waveguide resonator not only compensates the loss, but also can change the dispersion relationship in the ring resonator. It is demonstrated that the group delay time is negative when the resonator is in the undercoupled condition, which also means the resonator exhibits the fast light effect. Theoretical analysis indicates that fast light effect due to anomalous dispersion, would be manipulated by the gain coefficient controlled by the input pump light power and that fast light would enhance scale factor of the optical resonant gyroscope. Resonance optical gyroscope (ROG)'s scale factor for measuring rotation rate is enhanced by anomalous dispersion with superluminal light propagation. The sensitivity of ROG could be enhanced by anomalous dispersion by coupled resonators even considering the effect of anomalous dispersion and propagation gain on broadened linewidth, and this could result in at least two orders of magnitude enhancement in sensitivity.
机译:在光波导谐振器中引入有源增益不仅可以补偿损耗,而且可以改变环形谐振器中的色散关系。证明了当谐振器处于欠耦合状态时,群延迟时间为负,这也意味着谐振器表现出快速的光效应。理论分析表明,由异常色散引起的快速光效应将由输入泵浦光功率控制的增益系数控制,并且快速光将增强光学谐振陀螺仪的比例因子。共振光学陀螺仪(ROG)的测量旋转速率的比例因子通过具有超光速传播的反常色散得到增强。即使考虑了异常色散和传播增益对加宽的线宽的影响,也可以通过耦合谐振器的异常色散来提高ROG的灵敏度,这可能导致灵敏度至少提高两个数量级。

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