全息术
材料科学
衍射效率
制作
纳米制造
光电子学
光学
衍射
波长
可见光谱
吞吐量
量子效率
纳米颗粒
纳米技术
计算机科学
电信
物理
医学
替代医学
病理
无线
作者
Joohoon Kim,Dong Kyo Oh,Hongyoon Kim,Gwanho Yoon,Chunghwan Jung,Jae‐Kyung Kim,Trevon Badloe,Hyunjung Kang,Seokwoo Kim,Younghwan Yang,Jihae Lee,Byoungsu Ko,Jong G. Ok,Junsuk Rho
标识
DOI:10.1002/lpor.202200098
摘要
Abstract Metasurface holography, the reconstruction of holographic images by modulating the spatial amplitude and phase of light using metasurfaces, has emerged as a next‐generation display technology. However, conventional fabrication techniques used to realize metaholograms are limited by their small patterning areas, high manufacturing costs, and low throughput, which hinder their practical use. Herein, a high efficiency hologram using a one‐step nanomanufacturing method with a titanium dioxide nanoparticle‐embedded‐resin, allowing for high‐throughput and low‐cost fabrication is demonstrated. At a single wavelength, a record high theoretical efficiency of 96.9% is demonstrated with an experimentally measured conversion efficiency of 90.6% and zero‐order diffraction of 7.3% producing an ultrahigh‐efficiency, twin‐image free hologram that can even be directly observed under ambient light conditions. Moreover, a broadband meta‐atom with an average efficiency of 76.0% is designed, and a metahologram with an average efficiency of 62.4% at visible wavelengths from 450 to 650 nm is experimentally demonstrated.
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