Girard Christian, Dujardin Erik, Li Mei, Mann Stephen
NanoSciences Group, CEMES/CNRS UPR 8011, 29 rue Jeanne Marvig, 31055 Toulouse Cedex 4, France.
Phys Rev Lett. 2006 Sep 8;97(10):100801. doi: 10.1103/PhysRevLett.97.100801. Epub 2006 Sep 7.
Extended branched networks of single-nanoparticle chains have recently been self-assembled from colloidal suspensions. In particular, gold nanoparticle linear chains and complex chain networks have revealed unique signatures of plasmon modes in their extinction spectra. In this Letter, we investigate theoretically their near-field optical properties and show that a real space mapping of these modes can be achieved with a photon scanning tunneling microscope setup. A distinct subwavelength patterning of the optical near-field gives rise to well-resolved photon scanning tunneling microscope images that can be used to identify the network segments able to efficiently carry optical energy.
最近,单纳米颗粒链的扩展分支网络已从胶体悬浮液中自组装而成。特别是,金纳米颗粒线性链和复杂链网络在其消光光谱中展现出等离子体模式的独特特征。在本信函中,我们从理论上研究了它们的近场光学特性,并表明可以通过光子扫描隧道显微镜装置实现这些模式的实空间映射。光学近场独特的亚波长图案化产生了分辨率良好的光子扫描隧道显微镜图像,可用于识别能够有效承载光能的网络片段。