Jia H, Wu Q J, Jiang C, Wang H, Wang L Q, Jiang J Z, Zhang D X
Appl Opt. 2019 Jan 20;58(3):704-711. doi: 10.1364/AO.58.000704.
Plasmonic color filters, exhibiting great promise as an alternative for existing colorant-based filters, often only output one fixed color. Developing active color filters with controllable color output will lead to more compact color filter-based devices. In this paper, we present an approach to achieve active color filtering with a polarization-dependent plasmonic structural color filter, which comprises arrays of asymmetric cross-shaped nanoapertures in an ultrathin film of silver. A systematical study for aperture size, array period, and the thickness of silver film dependences of color filter properties is carried out, and strategies for polarization-dependent color filter designing are generated. A polarization-dependent and high tunability of color can be achieved by selecting the appropriate nanostructure parameters, which imply many potential applications.
等离子体彩色滤光片作为现有基于着色剂的滤光片的替代品展现出巨大潜力,但其通常仅输出一种固定颜色。开发具有可控颜色输出的有源彩色滤光片将使基于彩色滤光片的设备更加紧凑。在本文中,我们提出了一种利用偏振依赖型等离子体结构彩色滤光片实现有源彩色滤光的方法,该滤光片由银超薄膜中的不对称十字形纳米孔径阵列组成。我们对孔径大小、阵列周期以及银膜厚度对滤光片特性的依赖性进行了系统研究,并得出了偏振依赖型彩色滤光片的设计策略。通过选择合适的纳米结构参数,可以实现颜色的偏振依赖性和高度可调性,这意味着有许多潜在应用。