Gao Yisheng, Fan Yubin, Wang Yujie, Yang Wenhong, Song Qinghai, Xiao Shumin
State Key Laboratory on Tunable Laser Technology, Ministry of Industry and Information Technology Key Lab of Micro-Nano Optoelectronic Information System, Shenzhen Graduate School , Harbin Institute of Technology , Shenzhen 518055 , China.
Collaborative Innovation Center of Extreme Optics , Shanxi University , Taiyuan 030006 , China.
Nano Lett. 2018 Dec 12;18(12):8054-8061. doi: 10.1021/acs.nanolett.8b04311. Epub 2018 Nov 28.
Nonlinear holographic metasurfaces have been intensively studied due to their potentials in practical applications. So far, nonlinear holographic metasurfaces have only been realized with plasmonic nanoantennas, suffering from high absorption loss and low damage threshold. Herein we propose and experimentally demonstrate a novel mechanism for nonlinear holographic metasurfaces. In contrast with conventional studies, the all-dielectric metasurface is composed of C-shaped Si nanoantennas. The incident laser is enhanced by their fundamental resonance, whereas the generated third-harmonic generation (THG) signals are redistributed to the air gap region via the higher order resonance, significantly reducing the absorption loss at short wavelength and resulting in an enhancement factor as high as 230. After introducing abrupt phase changes from 0 to 2π to the C elements, high-efficiency cyan and blue THG holograms have been experimentally generated with the Si metasurface for the very first time. This research shall shed light on the advances of nonlinear all-dielectric metasurfaces.
非线性全息超表面因其在实际应用中的潜力而受到广泛研究。到目前为止,非线性全息超表面仅通过等离子体纳米天线实现,存在高吸收损耗和低损伤阈值的问题。在此,我们提出并通过实验证明了一种用于非线性全息超表面的新机制。与传统研究不同,全介质超表面由C形硅纳米天线组成。入射激光通过其基模共振得到增强,而产生的三次谐波(THG)信号则通过高阶共振重新分布到气隙区域,显著降低了短波长处的吸收损耗,并产生了高达230的增强因子。在给C形元件引入从0到2π的突变相位变化后,首次利用硅超表面通过实验产生了高效的青色和蓝色THG全息图。这项研究将为非线性全介质超表面的发展提供启示。