论文标题
可调双层介电元表通过堆叠磁性镜
Tunable bilayer dielectric metasurface via stacking magnetic mirrors
论文作者
论文摘要
功能可调性,环境适应性和易于制造是元信息中高度期望的特性。在这里,我们提供了一个可调双层元面,由两个堆叠的相同的介电磁反射镜组成,该镜子受到占主导地位的电偶极子和其他磁多物的激发,在界面附近表现出非局部电场增强和高反射。与具有不同功能的两个结构的直接叠加到可调性不同,我们通过操纵两个磁反射镜之间的界面附近的界面耦合来实现高反射和高传输之间的可逆转换。当层间间距很小时,磁性镜效应会增强层间耦合。减小双层跨表面的层间间距会导致对元原子的更强层间耦合和散射抑制,从而导致较高的传播。相反,增加间距会导致层间耦合和散射增强,从而导致高反射。双层跨表面的高传递具有良好的鲁棒性,因为与层间耦合的元原子可以维持相邻的元原子运动和无序位置扰动的散射抑制。这项工作提供了一种直接的方法(即堆叠磁性镜子)来设计可调的元图,为应用于通信和传感的高性能光学开关提供了新的光。
Functional tunability, environmental adaptability, and easy fabrication are highly desired properties in metasurfaces. Here we provide a tunable bilayer metasurface composed of two stacked identical dielectric magnetic mirrors, which are excited by the dominant electric dipole and other magnetic multipoles, exhibiting nonlocal electric field enhancement near the interface and high reflection. Differ from the tunability through the direct superposition of two structures with different functionalities, we achieve the reversible conversion between high reflection and high transmission by manipulating the interlayer coupling near the interface between the two magnetic mirrors. The magnetic mirror effect boosts the interlayer coupling when the interlayer spacing is small. Decreasing the interlayer spacing of the bilayer metasurface leads to stronger interlayer coupling and scattering suppression of the meta-atom, which results in high transmission. On the contrary, increasing the spacing leads to weaker interlayer coupling and scattering enhancement, which results in high reflection. The high transmission of the bilayer metasurface has good robustness due to that the meta-atom with interlayer coupling can maintain the scattering suppression against adjacent meta-atom movement and disordered position perturbation. This work provides a straightforward method (i.e. stacking magnetic mirrors) to design tunable metasurface, shed new light on high-performance optical switches applied in communication and sensing.