Huang Cheng-ping
Opt Express. 2015 Dec 14;23(25):32015-24. doi: 10.1364/OE.23.032015.
Coupled metasurfaces may refer to a composite plasmonic structure, which consists of multilayered but usually different metasurfaces. A pair of orthogonal plasmonic polarizers, which represents one of such systems, can induce a transmission of light and 90-degree polarization rotation. We explored the effect systematically and found that such effect may be highly efficient and broadband in the near-infrared region. By combining the low-loss metal (silver), the longer operating wavelength, and a work style using propagating waveguide mode, conversion efficiency more than 80% has been suggested near the telecom wavelength. We also suggested that, by overlapping the internal surface-plasmon (2, 0) and (1, 1) modes, an efficient and wideband polarization rotation can be realized. The maximal efficiency is 83% around the wavelength 1340 nm, and the working bandwidth reaches 300 nm. Similar effect has also been revealed in the THz band. The results are useful for constructing compact and high-performance polarization rotators.
耦合超表面可能指的是一种复合等离子体结构,它由多层但通常不同的超表面组成。一对正交等离子体偏振器,就是这样一种系统的代表,它可以实现光的透射和90度的偏振旋转。我们系统地研究了这种效应,发现这种效应在近红外区域可能是高效且宽带的。通过结合低损耗金属(银)、更长的工作波长以及使用传播波导模式的工作方式,在电信波长附近已经表明转换效率超过80%。我们还表明,通过重叠内表面等离子体(2, 0)和(1, 1)模式,可以实现高效且宽带的偏振旋转。在波长1340 nm左右最大效率为83%,工作带宽达到300 nm。在太赫兹波段也发现了类似的效应。这些结果对于构建紧凑且高性能的偏振旋转器很有用。