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Tailoring the plasmonic whispering gallery modes of a metal-coated resonator for potential application as a refractometric sensor

机译:量身定制金属涂层谐振器的等离子回音壁模式,以潜在地用作折射传感器

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摘要

Plasmonic whispering gallery (WG) modes confined in metal-coated resonators are theoretically investigated by electromagnetic analyses. The resonance can be tuned from internal surface plasmonic WG modes to the hybrid state of the plasmonic mode by an introduced isolation layer. As the coated metal is reduced in size, the optical resonance is shifted out by the mode coupling of the internal and external surface plasmonicWGmodes. Based on the optical leak of the plasmonicWGmode, the optical influences led by the surroundings with a variable refractive index are considered. Device performance criteria such as optical power leak, resonant wavelength shift, and threshold gain are studied. Full wave simulations are also employed and the results present good consistency with analytic solutions. The metal-coated resonator assisted by an active material is expected to provide promising performance as a refractometric sensor. (C) 2015 Optical Society of America
机译:理论上通过电磁分析研究了局限在金属涂层谐振器中的等离子回音壁(WG)模式。共振可以通过引入的隔离层从内表面等离子WG模式调谐到等离子模式的混合状态。随着涂层金属尺寸的减小,内外表面plasmonicWGmodes的模式耦合将光学共振移出。基于plasmonicWGmode的光泄漏,考虑了由折射率可变的周围环境导致的光学影响。研究了器件性能标准,例如光功率泄漏,谐振波长偏移和阈值增益。还使用了全波模拟,结果与解析解具有很好的一致性。期望由活性材料辅助的金属涂层谐振器作为折光率传感器将提供有希望的性能。 (C)2015年美国眼镜学会

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