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基于 Fano 干涉光力学的等离子体纳米颗粒超灵敏尺寸分选

Ultrasensitive size-selection of plasmonic nanoparticles by Fano interference optical force.

机构信息

Beijing Key Laboratory of Nano-Photonics and Nano-Structure (NPNS), Department of Physics, Capital Normal University , Beijing 100048, PR China.

出版信息

ACS Nano. 2014 Jan 28;8(1):701-8. doi: 10.1021/nn405364u. Epub 2013 Dec 18.

Abstract

In this paper, we propose a solution for the ultrasensitive optical selection of plasmonic nanoparticles using Fano interference-induced scattering forces. Under a Gaussian beam excitation, the scattering of a plasmonic nanoparticle at its Fano resonance becomes strongly asymmetric in the lateral direction and consequently results in a net transverse scattering force, that is, Fano interference-induced force. The magnitude of this transverse scattering force is comparable with the gradient force in conventional optical manipulation experiments. More interestingly, the Fano scattering force is ultrasensitive to the particle size and excitation frequency due to the phase sensitivity of the interference between adjacent plasmon modes in the particle. Utilizing this distinct feature, we show the possibility of size-selective sorting of silver and gold nanoparticles with an accuracy of about ±10 nm and silica-gold core-shell nanoparticles with shell thickness down to several nanometers. These results would add to the toolbox of optical manipulation and fabrication.

摘要

在本文中,我们提出了一种使用 Fano 干涉诱导散射力对等离子体纳米粒子进行超灵敏光学选择的解决方案。在高斯光束激发下,等离子体纳米粒子在其 Fano 共振处的散射在横向方向上变得强烈不对称,从而导致净横向散射力,即 Fano 干涉诱导力。这个横向散射力的大小与传统光学操纵实验中的梯度力相当。更有趣的是,由于粒子中相邻等离子体模式之间的干涉的相位灵敏度,Fano 散射力对颗粒尺寸和激发频率非常敏感。利用这一独特的特性,我们展示了对银和金纳米粒子进行尺寸选择性分选的可能性,精度约为 ±10nm,对壳层厚度低至数纳米的二氧化硅-金核壳纳米粒子进行分选也是可行的。这些结果将为光学操纵和制造工具增添新的内容。

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