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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Two-photon imaging of localized optical fields in the vicinity of silver nanowires using a scanning near-field optical microscope
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Two-photon imaging of localized optical fields in the vicinity of silver nanowires using a scanning near-field optical microscope

机译:使用扫描近场光学显微镜对银纳米线附近的局部光场进行双光子成像

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摘要

We report a near-field two-photon excitation imaging technique for silver nanostructures to visualize optical fields in the vicinity of nanostructures. We have found that the excitation image of an isolated wire shows an oscillating feature along the long axis of the wire. The period of the oscillation is in good agreement with that of plasmon wavefunctions resonant with the excitation light. The oscillation was thus attributed to the resonant plasmon wavefunction. We also found that bundles of wires exhibit more intense photoluminescence signals than do isolated wires, particularly at junctions between wire ends and the shafts of other wires, which was attributed to the amplified optical fields at the ends of nanowires or interstitial gaps between the wires. We discuss the mechanism of the photoluminescence from silver nanowires. The photoluminescence is most probably attributed to emission from the oxidized surface layer of the silver nanowires, which is enhanced in resonance with plasmons on the wires.
机译:我们报告了银纳米结构的近场两光子激发成像技术,以可视化纳米结构附近的光学场。我们发现,一根孤立的电线的激励图像显示出沿着电线长轴的振荡特征。振荡的周期与与激发光共振的等离激元波函数的周期良好。因此,将振荡归因于共振等离子体激元波函数。我们还发现,导线束比隔离导线表现出更强的光致发光信号,特别是在导线末端和其他导线的轴之间的接合处,这归因于纳米线末端的放大光场或导线之间的间隙。我们讨论了银纳米线的光致发光机理。光致发光最有可能归因于来自银纳米线的氧化表面层的发射,该发射与线上的等离子体激元共振而增强。

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