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Turning a low Q fiber resonator into a high-sensitivity displacement sensor using slow light concepts

机译:使用慢光概念将低Q光纤谐振器变成高灵敏度位移传感器

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High-Q resonators have been widely used for sensing purposes. High Q factors normally lead to sharp spectral peaks which accordingly provide a strong sensitivity in spectral interrogation methods. In this work we employ a low-Q ring resonator to develop a high sensitivity sub-micrometric resolution displacement sensor. We use the slow-light effects occurring close to the critical coupling regime to achieve high sensitivity in the device. By tuning the losses in the cavity close to the critical coupling, extremely high group delay variations can be achieved, which in turn introduce strong enhancements of the absorption of the structure. We first validate the concept using an Optical Vector Analyzer (OVA) and then we propose a simple functional scheme for achieving a low-cost interrogation of this kind of sensors.
机译:高Q谐振器已广泛用于感测目的。高Q因子通常会导致尖锐的光谱峰,因此在光谱询问方法中会提供很强的灵敏度。在这项工作中,我们采用低Q环形谐振器来开发高灵敏度的亚微米分辨率位移传感器。我们使用接近临界耦合机制的慢光效应来实现设备的高灵敏度。通过调整腔内接近临界耦合的损耗,可以实现极高的群时延变化,从而大大增强了结构的吸收。我们首先使用光学矢量分析仪(OVA)验证了这一概念,然后提出了一种简单的功能方案,以实现对此类传感器的低成本询问。

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