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Strong coupling of hybrid and plasmonic resonances in liquid core plasmonic micro-bubble cavities

机译:液核等离子体微泡腔中混合和等离子体共振的强耦合

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摘要

A thin-wall plasmonic micro-bubble resonator, which is a high-Q optofluidic silica bubble cavity with a thin Ag film on the inside wall of the bubble, is proposed and fabricated to manipulate coupling among various types of resonant modes by changing its wall thickness and refractive index of the liquid in the core. Coupling of high-Q whispering gallery mode/plasmonic resonant mode forms hybridmode; the hybrid mode can again strongly couple with another interior plasmonic resonant mode in the bubble cavity to achieve tunable high-Q plasmonic resonance that can be feasibly accessed by standard tapered fiber coupling. Therefore, the novel cavity structure provides a unique, yet general, platform to study plasmonic/photonic, hybrid/plasmonic, and plasmonic/plasmonic coupling. (C) 2015 Optical Society of America
机译:提出并制造了一种薄壁等离激元微气泡谐振器,它是一种高Q光电硅气泡腔,在气泡的内壁上有一层薄的Ag膜,可以通过改变其壁来控制各种类型的谐振模式之间的耦合。芯中液体的厚度和折射率。高Q耳语画廊模式/等离子体共振模式的耦合形成混合模式;混合模式可以再次与气泡腔体中的另一个内部等离子体共振模式强耦合,以实现可调谐的高Q等离子体共振,可以通过标准的锥形光纤耦合来实现。因此,新颖的腔结构为研究等离子/光子,混合/等离子和等离子/等离子耦合提供了一个独特而又通用的平台。 (C)2015年美国眼镜学会

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