Modeling of a fiber Fabry-Pérot sensor in thebroken PT-symmetric region

IF 1.1 Q4 OPTICS
Faiza Iftikhar, Raja Ahmad, Imran Cheema
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引用次数: 0

Abstract

Parity-time (PT)-symmetric optical sensors operating around exceptional points have recently gained much attraction due to their improved sensitivity for measuring small perturbations. Previously, most of the PT-symmetric sensors have been based on detecting the mode splitting that arises due to the perturbation-induced change in coupling strength between two sub-cavities of the PT-symmetric system. Here, we present a model of a fiber Fabry-Pérot linear cavities sensor tailored to operate in the broken parity-time symmetric region. We propose, what we believe to be, a new sensing metric based on the mode’s linewidth change as a function of perturbation-induced loss changes in one of the cavities. The coupling strength between the two sub-cavities remains unchanged in our proposed sensor. We derive a mathematical expression that describes a square root dependence of the full-width-half-maximum change as a function of the refractive index change-induced loss, which is introduced via a tapered fiber in one of the fiber cavities. The proposed fiber Fabry-Pérot refractive index sensor has a maximum sensitivity of 2.26 × 10 7 GHz/RIU and the lowest detection limit of 10 −9 RIU, widely outperforming comparable cavity sensors subject to the same refractive index change, gain, and loss settings.
光纤法布里- psamro传感器在pt对称破碎区域的建模
在异常点附近工作的奇偶时间(PT)对称光学传感器由于其测量小扰动的灵敏度提高,最近获得了很大的吸引力。以前,大多数pt对称传感器都是基于检测由于pt对称系统的两个子腔之间耦合强度的扰动引起的变化而产生的模式分裂。在这里,我们提出了一个模型的光纤法布里- p线性腔传感器量身定制的工作在破碎奇偶时间对称区域。我们提出,我们认为是,一个新的传感度量基于模式的线宽变化作为微扰引起的损失变化的一个腔的函数。在我们提出的传感器中,两个子腔之间的耦合强度保持不变。我们推导了一个数学表达式,该表达式描述了全宽半最大变化作为折射率变化引起的损失的函数的平方根依赖关系,折射率变化引起的损失是通过锥形光纤在其中一个光纤腔中引入的。所提出的光纤法布里- prot折射率传感器的最大灵敏度为2.26 × 10.7 GHz/RIU,最低检测限为10−9 RIU,远远优于具有相同折射率变化、增益和损耗设置的同类腔传感器。
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CiteScore
3.50
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0.00%
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