Quinten M, Leitner A, Krenn J R, Aussenegg F R
Opt Lett. 1998 Sep 1;23(17):1331-3. doi: 10.1364/ol.23.001331.
We propose the idea of a subwavelength-sized light guide represented by a linear chain of spherical metal nanoparticles in which light is transmitted by electrodynamic interparticle coupling. The light-transport properties of this system are investigated by use of model calculations based on generalized Mie theory. Considering Ag particles of 50-nm diameter, we find optimum guiding conditions for an interparticle spacing of 25 nm, and a corresponding 1/e signal-damping length of 900 nm is evaluated. The proposed principle of optical energy transport may be useful for subwavelength transmission lines within integrated optics circuits and for near-field optical microscopy.
我们提出了一种由球形金属纳米粒子线性链表示的亚波长尺寸光导的概念,其中光通过电动力学粒子间耦合进行传输。利用基于广义米氏理论的模型计算来研究该系统的光传输特性。考虑直径为50 nm的银粒子,我们发现粒子间距为25 nm时的最佳导光条件,并评估出相应的1/e信号衰减长度为900 nm。所提出的光能传输原理可能对集成光学电路中的亚波长传输线以及近场光学显微镜有用。