首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >The effect of thermal-induced noise on doubly-coupled-ring optical gyroscope sensor around exceptional point
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The effect of thermal-induced noise on doubly-coupled-ring optical gyroscope sensor around exceptional point

机译:热诱导噪声对双耦合环光学陀螺仪传感器的影响,包括卓越点

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摘要

We theoretically analyze the performance of gyroscope sensor near exceptional point (EP), consisting of two coupled micro-ring resonators. Distinct thermal behaviors, due to different gains in these two rings, could bring about an extra resonance shift between them, which places a great impact on EP sensor including its sensitivity, visibility and stability. Our simulations demonstrate that, such thermal-induced noise can be amplified around EP simultaneously as well as the frequency splitting generated from Sagnac effect we should detect, giving rise to the difficulty of sensing comparatively weak rotation-induced perturbations, and a limited detection range while utilizing the superiority of EP in such a gyroscope system. Our tolerance analysis in this paper may have a profound referential meaning to the future experimental works.
机译:理论上,从理论上分析陀螺仪传感器的性能附近的特殊点(EP),包括两个耦合的微环谐振器。 由于这两个环中的不同收益,不同的热行为,可以在它们之间带来额外的共振偏移,这对EP传感器产生了很大的影响,包括其灵敏度,可见性和稳定性。 我们的模拟表明,这种热诱导的噪声可以同时以EP放大以及从SAGNAC效应产生的频率分裂,我们应该检测,从而引起旋转诱导的扰动相对较弱的感测的难度,以及有限的检测范围 利用这种陀螺系统中EP的优越性。 我们本文的耐受性分析可能对未来的实验工作具有深远的参照意义。

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