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Manifestation of a highly sensitive evanescent wave absorption-based refractive index sensor realized by radiating with an optical Airy beam

机译:通过用光通气梁辐射实现高敏感的渐逝波吸收基折射率传感器的表现

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摘要

In this research, a theoretical perception on the notion of an ultra-high sensitive evanescent wave-based fiber-optic refractive index sensor has been proposed by shining an optical Airy beam. The sensing configuration consists of a multimode fiber which is decladded from the middle to aptly sculpt the evanescent wave. In presence of the Airy beam, effectual coupling of high-order modes within the sensing structure has been affirmed by using the classical wave-optic model. To corroborate our theoretical study, an Eigenmode expansion solver (EME) propagation analysis was conducted in commercially offered Mode solution software (Lumerical Inc.) to investigate the transmission characteristics of Airy beam within the waveguide structure. Compared with conventional Gaussian beam-based sensor, the proposed refractive index sensor renders a maximum 19.15 fold superior sensitivity of 992.39 dB/RIU with an admirable sensing resolution of ~1.00×10~(-5) RIU. Thus, this nascent-class of beam called Airy beam manifests a new degree of freedom which demonstrates the viability of the proposed scheme for the usage of chemical and biological sensing.
机译:在本研究中,通过闪耀光通气梁提出了对超高敏感蒸发波基光纤折射率传感器的概念的理论感知。感测配置包括一个多模光纤,该多模光纤从中间被释放到突然雕刻渐逝波。在通气梁的存在下,通过使用经典波光模型已经肯定了感测结构内的高阶模式的有效耦合。为了证实我们的理论研究,在商业提供的模式解决方案软件(Lumerical Inc.)中进行了特征模型扩展求解器(EME)传播分析,以研究波导结构内通气梁的传输特性。与传统的高斯梁的传感器相比,所提出的折射率传感器最大值为9.15倍的优越敏感性992.39 dB / Riu,令人钦佩的感测分辨率为约1.00×10〜( - 5)Riu。因此,这种称为Airy光束的新增光束表现出一种新的自由度,其展示了所提出的方案用于使用化学和生物传感的方法的可行性。

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