Bai Wei, Yang Ping, Wang Shuai, Huang Jie, Chen Dingbo, Zhang Zhaojian, Yang Junbo, Xu Bing
The Key Laboratory of Adaptive Optics, Chinese Academy of Sciences, Chengdu 610209, China.
Center of Material Science, National University of Defense Technology, Changsha 410073, China.
Nanomaterials (Basel). 2019 Jul 10;9(7):993. doi: 10.3390/nano9070993.
Metalenses recently have attracted attention because of their more compact size in comparison with conventional lenses; they can also achieve better optical performance with higher resolution. Duplexer is an interesting function of a metalens that can distinguish different sources and divide them into two parts for specific purposes. In this article, we design tunable duplex metalenses with phase-change material GeSbTe for the first time. Two types of special unit cells are designed to modulate the incident lights, and four metalenses are designed based on the two types of unit cells. Specific phase profiles are calculated for different sections of metalens in which the corresponding unit cells are settled; accordingly, the metalenses can focus the incident lights at any positions according to our design. Moreover, the metalenses become selectable via tuning the state of phase-change material, which means that the output light field can be actively controlled. The proposal of our tunable duplex metalenses will offer new opportunities for active three-dimensional imaging or optical coding.
近年来,超构透镜因其相较于传统透镜更紧凑的尺寸而备受关注;它们还能以更高的分辨率实现更好的光学性能。复用器是超构透镜的一个有趣功能,它可以区分不同的光源并将它们分成两部分以用于特定目的。在本文中,我们首次设计了具有相变材料GeSbTe的可调谐复用超构透镜。设计了两种特殊的单元结构来调制入射光,并基于这两种单元结构设计了四个超构透镜。针对超构透镜中设置了相应单元结构的不同部分计算了特定的相位分布;因此,超构透镜可以根据我们的设计将入射光聚焦在任何位置。此外,通过调整相变材料的状态可以使超构透镜具有选择性,这意味着输出光场可以被主动控制。我们可调谐复用超构透镜的提出将为主动三维成像或光学编码提供新的机遇。