Istituto Italiano di Tecnologia , via Morego 30, I-16163 Genova, Italy.
Nano Lett. 2014 Jun 11;14(6):3166-71. doi: 10.1021/nl500452p. Epub 2014 May 27.
The possibility to develop nanosystems with appreciable magnetic response at optical frequencies has been a matter of intense study in the past few years. This aim was strongly hindered by the saturation of the magnetic response of "natural" materials beyond the THz regime. Recently, in order to overcome such limitation, it has been considered to enhance the magnetic fields through the induction of displacement currents triggered by plasmonic resonances. Here we investigate a nanoassembly supporting the hybridization of an electric and magnetic plasmonic mode in Fano resonance conditions. Taking advantage of the enhancement properties owned by such interferential resonance, we have been able to generate an intense and localized magnetic hot-spot in the near-infrared spectral region.
在过去的几年中,开发在光学频率下具有可观磁响应的纳米系统一直是人们深入研究的课题。这一目标受到“自然”材料在太赫兹区域之外的磁响应饱和的强烈阻碍。最近,为了克服这种限制,人们考虑通过感应等离子体共振引发的位移电流来增强磁场。在这里,我们研究了一个纳米组装体,该组装体支持在 Fano 共振条件下电和磁等离子体模式的杂交。利用这种干涉共振所具有的增强特性,我们能够在近红外光谱区域产生强烈的局域磁热点。