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Ultra-wide free spectral range, enhanced sensitivity, and removed mode splitting SOI optical ring resonator with dispersive metal nanodisks

机译:超宽自由光谱范围,增强的灵敏度以及带色散金属纳米盘的去除模式分裂SOI光学环形谐振器

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摘要

A refractive index sensor with a free spectral range that is unlimited by neighboring mode spacing (10 fold increase with respect to 20 nm of an unmodified ring), based on an optical silicon-on-insulator microring resonator patterned with periodically arranged set of gold nanodisks, is presented and numerically verified. It is shown that the particular periodic arrangement of nanodisks selects a single resonance from a wide set of ring resonator modes and removes mode splitting. Extraction of the waveguided electromagnetic energy into evanescent plasmonic modes enhances light-analyte interaction and increases device sensitivity to variation of refractive index up to 176 nm/RIU (about 2-fold increase compared to the unmodified ring), which is useful for sensor applications. Proof of the concept is presented by finite-difference time-domain simulations of a design readily practicable by means of modern nanotechnology. (C) 2015 Optical Society of America
机译:折射率传感器的自由光谱范围不受相邻模式间隔的限制(相对于未修饰环的20 nm,增加了10倍),基于绝缘层上的光学硅上微环谐振器,并图案化了周期排列的金纳米盘组,并进行了数值验证。结果表明,纳米盘的特定周期性排列从一系列环形共振器模式中选择单个共振,并消除了模式分裂。将波导电磁能提取为e逝的等离激元模式可增强光与分析物之间的相互作用,并提高器件对高达176 nm / RIU的折射率变化的敏感性(与未修饰的环相比,增加约2倍),这对于传感器应用很有用。通过现代纳米技术可以很容易地对设计进行有限差分时域仿真,可以证明这一概念。 (C)2015年美国眼镜学会

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