| Literature DB >> 27398793 |
Bo Wang1, Fengliang Dong2, Qi-Tong Li1, Dong Yang1, Chengwei Sun1, Jianjun Chen1,3, Zhiwei Song2, Lihua Xu2, Weiguo Chu2, Yun-Feng Xiao1,3, Qihuang Gong1,3, Yan Li1,3.
Abstract
Dielectric metasurfaces built up with nanostructures of high refractive index represent a powerful platform for highly efficient flat optical devices due to their easy-tuning electromagnetic scattering properties and relatively high transmission efficiencies. Here we show visible-frequency silicon metasurfaces formed by three kinds of nanoblocks multiplexed in a subwavelength unit to constitute a metamolecule, which are capable of wavefront manipulation for red, green, and blue light simultaneously. Full phase control is achieved for each wavelength by independently changing the in-plane orientations of the corresponding nanoblocks to induce the required geometric phases. Achromatic and highly dispersive meta-holograms are fabricated to demonstrate the wavefront manipulation with high resolution. This technique could be viable for various practical holographic applications and flat achromatic devices.Entities:
Keywords: Dielectric metasurface; achromatic hologram; color hologram; highly dispersive hologram; multiwavelength; visible
Year: 2016 PMID: 27398793 DOI: 10.1021/acs.nanolett.6b02326
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189