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作为表面等离子体共振器的银纳米线。

Silver nanowires as surface plasmon resonators.

作者信息

Ditlbacher Harald, Hohenau Andreas, Wagner Dieter, Kreibig Uwe, Rogers Michael, Hofer Ferdinand, Aussenegg Franz R, Krenn Joachim R

机构信息

Institute of Physics, Karl-Franzens-University, 8010 Graz, Austria.

出版信息

Phys Rev Lett. 2005 Dec 16;95(25):257403. doi: 10.1103/PhysRevLett.95.257403.

Abstract

We report on chemically prepared silver nanowires (diameters around 100 nm) sustaining surface plasmon modes with wavelengths shortened to about half the value of the exciting light. As we find by scattered light spectroscopy and near-field optical microscopy, the nonradiating character of these modes together with minimized damping due to the well developed wire crystal structure gives rise to large values of surface plasmon propagation length and nanowire end face reflectivity of about 10 microm and 25%, respectively. We demonstrate that these properties allow us to apply the nanowires as efficient surface plasmon Fabry-Perot resonators.

摘要

我们报道了通过化学方法制备的银纳米线(直径约为100纳米),其支持表面等离激元模式,波长缩短至激发光波长的约一半。通过散射光谱和近场光学显微镜我们发现,这些模式的非辐射特性以及由于良好发育的线晶体结构导致的最小化阻尼,分别产生了约10微米的大表面等离激元传播长度值和约25%的纳米线端面反射率。我们证明这些特性使我们能够将纳米线用作高效的表面等离激元法布里 - 珀罗谐振器。

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