Scalable manufacturing of high-index atomic layer-polymer hybrid metasurfaces for metaphotonics in the visible

  • Kim, Joohoon; 
  • Seong, Junhwa; 
  • Kim, Wonjoong; 
  • Lee, Gun-Yeal; 
  • Kim, Seokwoo; 
  • ... Lee, Heon; 
  • 외 16명
Citations

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266
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초록

The authors propose a method for the scalable manufacturing of metalenses using deep-ultraviolet argon fluoride immersion lithography and wafer-scale nanoimprint lithography, opening a route towards their low-cost, high-throughput mass production. 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.

키워드

BAND ACHROMATIC METALENS; RESOLUTION
제목
Scalable manufacturing of high-index atomic layer-polymer hybrid metasurfaces for metaphotonics in the visible
저자
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
DOI
10.1038/s41563-023-01485-5
발행일
2023-04-01
유형
Article
저널명
Nature Materials
권
22
호
4
페이지
474 ~ +