Si Guangyuan, Zhao Yanhui, Leong Eunice Sok Ping, Lv Jiangtao, Jun Liu Yan
College of Information Science and Engineering, Northeastern University, Shenyang 110004, People's Republic of China.
Nanotechnology. 2014 Nov 14;25(45):455203. doi: 10.1088/0957-4484/25/45/455203. Epub 2014 Oct 22.
We report on a broad color tuning effect covering the visible range from a single plasmonic chip. By simply tilting the orientation of the designed plasmonic chip within a certain range, the photon-plasmon coupling interactions between the incident light and the plasmonic nanostructures on the chip can be finely tuned, resulting in an angle-dependent continuous color filtering effect. The physical mechanism of the device is investigated through the full-wave calculations, which provide important guidance for the design and optimization of the proposed devices. The broad color tuning from the demonstrated single chip will potentially benefit visualization and display technologies, and is particularly useful for the construction of reflection-based spatial light modulators.
我们报道了一种来自单个等离子体芯片的覆盖可见光范围的广泛颜色调谐效应。通过简单地在一定范围内倾斜设计好的等离子体芯片的方向,芯片上入射光与等离子体纳米结构之间的光子 - 等离子体耦合相互作用可以被精细调节,从而产生角度依赖的连续颜色滤波效应。通过全波计算研究了该器件的物理机制,这为所提出器件的设计和优化提供了重要指导。所展示的单个芯片实现的广泛颜色调谐可能会使可视化和显示技术受益,并且对于基于反射的空间光调制器的构建特别有用。