Kim Joohoon, Seong Junhwa, Kim Wonjoong, Lee Gun-Yeal, Kim Seokwoo, Kim Hongyoon, Moon Seong-Won, Oh Dong Kyo, Yang Younghwan, Park Jeonghoon, Jang Jaehyuck, Kim Yeseul, Jeong Minsu, Park Chanwoong, Choi Hojung, Jeon Gyoseon, Lee Kyung-Il, Yoon Dong Hyun, Park Namkyoo, Lee Byoungho, Lee Heon, Rho Junsuk
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang, Republic of Korea.
Department of Materials Science and Engineering, Korea University, Seoul, Republic of Korea.
Nat Mater. 2023 Apr;22(4):474-481. doi: 10.1038/s41563-023-01485-5. Epub 2023 Mar 23.
Metalenses are attractive alternatives to conventional bulky refractive lenses owing to their superior light-modulating performance and sub-micrometre-scale thicknesses; however, limitations in existing fabrication techniques, including high cost, low throughput and small patterning area, have hindered their mass production. Here we demonstrate low-cost and high-throughput mass production of large-aperture visible metalenses using deep-ultraviolet argon fluoride immersion lithography and wafer-scale nanoimprint lithography. Once a 12″ master stamp is imprinted, hundreds of centimetre-scale metalenses can be fabricated using a thinly coated high-index film to enhance light confinement, resulting in a substantial increase in conversion efficiency. As a proof of concept, an ultrathin virtual reality device created with the printed metalens demonstrates its potential towards the scalable manufacturing of metaphotonic devices.
由于其卓越的光调制性能和亚微米级厚度,超颖透镜是传统笨重折射透镜的有吸引力的替代品;然而,现有制造技术的局限性,包括高成本、低产量和小图案化面积,阻碍了它们的大规模生产。在这里,我们展示了使用深紫外氟化氩浸没光刻和晶圆级纳米压印光刻技术低成本、高产量地大规模生产大孔径可见超颖透镜。一旦在12英寸的母版上进行压印,就可以使用薄涂层高折射率薄膜来增强光限制,制造出数百个厘米级的超颖透镜,从而大幅提高转换效率。作为概念验证,用印刷超颖透镜创建的超薄虚拟现实设备展示了其在可扩展制造亚波长光子器件方面的潜力。