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High-Q and high-sensitivity width-modulated photonic crystal single nanobeam air-mode cavity for refractive index sensing

机译:用于折射率传感的高Q高灵敏度宽度调制光子晶体单纳米束空气模腔

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摘要

We propose a novel optical sensor based on a one-dimensional (1D) photonic crystal (PhC) single nano-beam air-mode cavity (SNAC). The performance of the device is investigated theoretically. By introducing a quadratically modulated width tapering structure, a waveguide-coupled 1D-PhC SNAC with a calculated high quality factor of 5.16 x 10(6) and an effective mode volume of V-eff similar to 2.18(lambda(si) )(3) can be achieved. For the air mode mentioned above, the light field can be strongly localized inside the air region (low index) and overlaps sufficiently with the analytes. Thus, the suggested PhC SNAC can be used for high-sensitivity refractive index sensing with an estimated high sensitivity of 537.8 nm/RIU. To the best of our knowledge, this is the first PhC single nanobeam geometry that features both high Q-factors and high sensitivity, and is potentially an ideal platform for realizing ultracompact lab-on-a-chip applications with dense arrays of functionalized spots for multiplexed sensing. (C) 2014 Optical Society of America
机译:我们提出了一种基于一维(1D)光子晶体(PhC)单纳米束空气模腔(SNAC)的新型光学传感器。从理论上研究了该设备的性能。通过引入二次调制宽度渐缩结构,波导耦合的1D-PhC SNAC的计算出的高质量因子为5.16 x 10(6),有效模式体积的V-eff与2.18(lambda / n(si))相似。 (3)可以实现。对于上述空气模式,光场可以在空气区域内强烈定位(低折射率),并与分析物充分重叠。因此,建议的PhC SNAC可用于估计灵敏度为537.8 nm / RIU的高灵敏度折射率感测。据我们所知,这是第一个具有高Q因子和高灵敏度的PhC单纳米束几何结构,并且是实现具有功能性点密集阵列的超紧凑芯片实验室应用的理想平台多路感应。 (C)2014年美国眼镜学会

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