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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Mid-infrared refractive index sensing using optimized slotted photonic crystal waveguides
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Mid-infrared refractive index sensing using optimized slotted photonic crystal waveguides

机译:使用优化的开槽光子晶体波导的中红外折射率感应

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摘要

Slotted photonic crystal waveguides (SPCWs) were designed to act as refractive index sensing devices at mid-infrared (IR) wavelengths around lambda = 3.6 mu m. In particular, effort was made to engineer the input and output slot waveguide interfaces in order to increase the effective sensitivity through resonant tapering. A slotted PhC waveguide immersed in air and liquid cladding layers was considered. To determine the performance of the sensor, the sensitivity of the device was estimated by calculating the shift in the upper band edge of the output transmission spectrum. The results showed that the sensitivity of a conventionally designed SPCW followed by modifications in the structure parameter yielded a 510 nm shift in the wavelength position of the upper band edge, indicating a sensitivity of more than 1150 nm per refractive index unit (RIU) with an insertion loss level of -0.3 dB. This work demonstrates the viability of photonic crystal waveguide high sensitivity devices in the Mid-IR, following a transposition of the concepts inherited from the telecom band and an optimization of the design, in particular a minimization of photonic device insertion losses. (C) 2017 Elsevier B.V. All rights reserved.
机译:开槽光子晶体波导(SPCW)被设计为在λ=3.6μm周围的中红外(IR)波长处用作折射率传感装置。特别地,努力制造输入和输出槽波导接口,以便通过谐振逐渐变细增加有效的灵敏度。考虑浸入空气和液体包层层中的开槽PHC波导。为了确定传感器的性能,通过计算输出传输频谱的上频段边缘的偏移来估计设备的灵敏度。结果表明,在结构参数中的常规设计SPCW之后的敏感性,在结构参数中的修改,上带边的波长位置的510nm偏移,表示每个折射率单元(RIU)超过1150nm的灵敏度插入损耗水平-0.3 dB。这项工作展示了从电信频带继承的概念的概念和设计的优化之后,中IR的光子晶体波导高灵敏度装置的可行性,特别是光子器件插入损耗的最小化。 (c)2017 Elsevier B.v.保留所有权利。

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