Department of Physics, Indian Institute of Science, Bangalore, 560012, India.
Nanoscale. 2013 Aug 21;5(16):7224-8. doi: 10.1039/c3nr02666c.
We report on a wafer scale fabrication method of a three-dimensional plasmonic metamaterial with strong chiroptical response in the visible region of the electromagnetic spectrum. The system was comprised of metallic nanoparticles arranged in a helical fashion, with high degree of flexibility over the choice of the underlying material, as well as their geometrical parameters. This resulted in exquisite control over the chiroptical properties, most importantly the spectral signature of the circular dichroism. In spite of the large variability in the arrangement, as well as the size and shape of the constituent nanoparticles, the average chiro-optical response of the material remained uniform across the wafer, thus confirming the suitability of this system as a large area chiral metamaterial. By simply heating the substrate for a few minutes, the geometrical properties of the nanoparticles could be altered, thus providing an additional handle towards tailoring the spectral response of this novel material.
我们报告了一种在可见电磁光谱区域具有强手性响应的三维等离子体超材料的晶圆级制造方法。该系统由以螺旋方式排列的金属纳米粒子组成,对底层材料及其几何参数的选择具有很高的灵活性。这使得对手性光学性质的控制非常精确,最重要的是对圆二色性的光谱特征进行控制。尽管在排列、组成纳米粒子的大小和形状方面存在很大的可变性,但材料的平均手性光学响应在整个晶圆上保持均匀,从而证实了该系统作为大面积手性超材料的适用性。只需将衬底加热几分钟,纳米粒子的几何形状就可以改变,从而为调整这种新型材料的光谱响应提供了一个额外的控制手段。