Department of Chemistry, RiceUniversity, Houston, TX 77005, USA.
ACS Nano. 2010 Feb 23;4(2):819-32. doi: 10.1021/nn9017312.
Heterodimers-two closely adjacent metallic nanoparticles differing in size or shape-exemplify a simple nanoscale geometry that gives rise to a remarkably rich set of properties. These include Fano resonances, avoided crossing behavior, and a surprising dependence of the scattering spectrum on the direction of excitation, known as the "optical nanodiode" effect. In a series of studies, we experimentally probe and theoretically analyze these properties in heterodimer nanostructures, where nanoparticle size and plasmon resonance frequency are varied systematically. Polarization-dependent dark-field microspectroscopy on individual heterodimer structures fabricated using a novel electromigration assembly method allows us to examine these properties in detail. These studies expand our understanding of the range of physical effects that can be observed in adjacent metallic nanoparticle pairs.
杂化二聚体——两个紧密相邻的、在尺寸或形状上存在差异的金属纳米粒子——体现了一种简单的纳米级几何结构,这种结构产生了一系列非常丰富的性质。这些性质包括:Fano 共振、避免交叉行为,以及散射光谱对激发方向的惊人依赖性,这种现象被称为“光学纳二极管”效应。在一系列研究中,我们通过实验探测和理论分析,研究了杂化二聚体纳米结构中的这些性质,其中系统地改变了纳米粒子的尺寸和等离子体共振频率。使用一种新颖的电迁移组装方法制备的单个杂化二聚体结构的偏振相关暗场微光谱法使我们能够详细研究这些性质。这些研究扩展了我们对可以在相邻金属纳米粒子对中观察到的一系列物理效应的理解。