等离子体子
光学
电介质
表面等离子体子
表面等离子体激元
拉曼散射
模式音量
功勋
极化子
衍射
材料科学
纳米光子学
极化(电化学)
穿透深度
电磁场
散射
光电子学
物理
拉曼光谱
光纤
多模光纤
量子力学
物理化学
化学
塑料光纤
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2006-01-01
卷期号:14 (5): 1957-1957
被引量:341
摘要
The controlled creation of nanometric electromagnetic field confinement via surface plasmon polariton excitations in metal/insulator/metal heterostructures is described via the concept of an effective electromagnetic mode volume Veff. Extensively used for the description of dielectric microcavities, its extension to plasmonics provides a convenient figure of merit and allows comparisons with dielectric counterparts. Using a one-dimensional analytical model and three-dimensional finite-difference time-domain simulations, it is shown that plasmonic cavities with nanometric dielectric gaps indeed allow for physical as well as effective mode volumes well below the diffraction limit in the gap material, despite significant energy penetration into the metal. In this picture, matter-plasmon interactions can be quantified in terms of quality factor Q and Veff, enabling a resonant cavity description of surface enhanced Raman scattering.
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