Zhao Jianxing, Fu Yuegang, Liu Zhiying, Zhou Jianhong
Opt Express. 2017 Sep 18;25(19):23051-23059. doi: 10.1364/OE.25.023051.
We propose a planar optical bilayered chiral metamaterial, which consists of periodic metallic arrays of two L-shaped structures and a nanorod twisted on both sides of a dielectric slab, to investigate the optical chirality breaking effect by using finite-difference time-domain (FDTD) method. Even the metamaterial is with chiral symmetry, an optical chirality breaking window in the asymmetric transmission pass band is obtained in chiral metamaterial structure. We analyze the plasmonic mode properties and attribute the mechanism of the optical chirality breaking effect to the plasmonic analogue of EIT. The optical chirality breaking window can be modulated by changing the geometric parameters of the nanorods in the structure.
我们提出了一种平面光学双层手性超材料,它由两个L形结构的周期性金属阵列和一个在电介质平板两侧扭曲的纳米棒组成,通过时域有限差分(FDTD)方法来研究光学手性破缺效应。即使该超材料具有手性对称性,在手性超材料结构的非对称传输通带中仍可获得一个光学手性破缺窗口。我们分析了等离子体模式特性,并将光学手性破缺效应的机制归因于电磁诱导透明(EIT)的等离子体类似物。通过改变结构中纳米棒的几何参数,可以调制光学手性破缺窗口。