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Graphene Enhanced Leaky Mode Resonance in Tilted Fiber Bragg Grating: A New Opportunity for Highly Sensitive Fiber Optic Sensor

机译:石墨烯增强渗透模式倾斜光纤布拉格光栅的共振:高敏感光纤传感器的新机会

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摘要

Tilted fiber Bragg grating (TFBG) presents many unique spectral characteristics for sensing. The widespread approaches to date are based on the cut-off mode resonance and surface plasmon resonance (SPR), whereas the leaky mode resonance is ignored in the literature. Herein, we theoretically demonstrate that the s-polarized (or TE/HE) leaky mode resonance (and the guided mode resonance) can be efficiently enhanced (and suppressed) by integrating graphene on the TFBG for a highly sensitive sensor. In contrast, the p-polarized (or TM/EH) mode (both leaky mode and guided counterpart) presents slight variation. The enhancement principle is discussed based on the variation in the mode characteristics induced by the graphene. The results show that the graphene enhanced leaky mode resonance presents ultra-sensitive intensity response but insensitive wavelength response to the extremely small analyte perturbation. The sensitivities are achieved up to 14108dB/RIU and 5232.6dB/RIU for the first two leaky modes in gaseous media respectively, which are 121 and 13 times higher than that of bare TFBG. This novel sensing platform provides a promising technique that can compete with the widespread SPR approach in fiber optic sensing fields, which opens up new opportunities for industrial, environmental, and biochemical sensing applications.
机译:倾斜光纤布拉格光栅(TFBG)呈现了许多用于感测的独特光谱特性。迄今为止的广泛方法基于截止模式谐振和表面等离子体共振(SPR),而在文献中忽略了泄漏的模式共振。这里,理论上,我们证明了S偏振(或TE / HE)漏泄漏模式谐振(和引导模式谐振)可以通过在TFBG上积分高敏感传感器来有效地增强(和抑制)。相反,p偏振(或TM / EH)模式(泄漏模式和引导对应)都具有略有变化。基于石墨烯诱导的模式特性的变化来讨论增强原理。结果表明,石墨烯增强泄漏模式谐振呈现出超敏强度响应,但对极小分析物扰动的不敏感的波长响应。敏感性可分别实现高达14108dB / RiU和5232.6dB / RiU,分别为前两种漏液模式,其比裸晶介质高121和13倍。该新颖的传感平台提供了一种有希望的技术,可以与光纤传感领域的广泛SPR方法竞争,这为工业,环境和生化传感应用开辟了新的机会。

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