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Spatially Localized Enhancement of Evanescent Coupling to Whispering-Gallery Modes at 1550 nm Due to Surface Plasmon Resonances of Au Nanowires

机译:由于金纳米线的表面等离子体共振,在1550 nm处E逝耦合到耳语画廊模式的空间局部增强。

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We demonstrate a highly localized enhancement of evanescent coupling between a tapered optical fiber and a high- $Q$ dielectric microresonator owing to the resonant evanescent excitation of localized surface plasmons of a gold nanowire placed on the microresonator''s surface. This localized enhancement, at 1550 nm, is due to nanowire fragments that are confined to specific regions of the surface. The enhancement (of photon-tunneling probability) is measured by comparing properties of the whispering-gallery modes’ throughput dips before and after deposition of the nanowire. The experimental results presented here show coupling enhancement by a factor of 10–700, depending on the position of fiber–microresonator contact in relation to the nanowire. These Au-nanowire-coated microresonators could provide enhanced sensitivity in various types of surface-plasmon-based gas, chemical, and biological-sensing applications within the telecommunication frequency bands.
机译:由于在微谐振器表面放置的金纳米线的局部表面等离振子的共振消逝激发,我们证明了锥形光纤和高$ Q $电介质微谐振器之间的van逝耦合高度局部增强。在1550 nm处的这种局部增强是由于纳米线碎片被限制在表面的特定区域内。通过比较耳语画廊模式在纳米线沉积前后的吞吐率下降的特性,可以测量(光子隧道概率)的提高。这里展示的实验结果表明耦合增强了10-700倍,具体取决于纤维-微谐振器相对于纳米线的接触位置。这些镀金纳米线的微谐振器可以在电信频段内的各种类型的基于表面等离子体的气体,化学和生物传感应用中提高灵敏度。

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