Qi Jianxia, Zhang Mingdi, Zhang Yunguang, Han Qingyan, Gao Wei, Wang Yongkai, Miao Runcai, Dong Jun
Appl Opt. 2019 Jan 10;58(2):479-484. doi: 10.1364/AO.58.000479.
A chiral nanostructure array is designed, which is composed of a bilayer rotational F4-shaped nanoarray configuration. The surface plasmon resonance and circular dichroism are studied by changing the parameters of the structure. The results show that the structure has strong multiband circular dichroism, which is attributed to the coupling of the layers. In theory, based on the Born-Kuhn model, the upper and lower nanostructures are equivalent to electric dipoles. By analyzing the coupling mode of electric dipoles in the upper and lower layer, the mechanism of circular dichroism and the shift of the circular dichroism resonance are revealed. Besides, there are several specific modes that are fault tolerant of fabrication issues. This feature unveils the bright prospect of spectral anti-interference. So, the suggested chiral nanostructure can be used in biologically targeted molecular detection and spectral sensing.
设计了一种手性纳米结构阵列,其由双层旋转F4形纳米阵列构型组成。通过改变结构参数研究了表面等离子体共振和圆二色性。结果表明,该结构具有很强的多波段圆二色性,这归因于各层之间的耦合。理论上,基于玻恩-库恩模型,上下纳米结构相当于电偶极子。通过分析上下层电偶极子的耦合模式,揭示了圆二色性的机理和圆二色性共振的位移。此外,有几种特定模式对制造问题具有容错能力。这一特性揭示了光谱抗干扰的光明前景。因此,所提出的手性纳米结构可用于生物靶向分子检测和光谱传感。