High-efficiency broadband achromatic metalens for near-IR biological imaging window

Высокоэффективная широкополосная ахроматическая металинза для биологической визуализации в ближнем инфракрасном диапазоне
Yujie Wang, Qinmiao Chen, Wenhong Yang, Ziheng Ji, Limin Jin, Xing Ma, Qinghai Song, Alexandra Boltasseva, Jiecai Han, Vladimir M. Shalaev, Shumin Xiao
2021-09-21

broadband achromatic metalensflat photonicshigh-aspect-ratio fabricationnear-infrared biological imagingtitanium dioxide nanopillars
Over the past years, broadband achromatic metalenses have been intensively studied due to their great potential for applications in consumer and industry products. Even though significant progress has been made, the efficiency of technologically relevant silicon metalenses is limited by the intrinsic material loss above the bandgap. In turn, the recently proposed achromatic metalens utilizing transparent, high-index materials such as titanium dioxide has been restricted by the small thickness and showed relatively low focusing efficiency at longer wavelengths. Consequently, metalens-based optical imaging in the biological transparency window has so far been severely limited. Herein, we experimentally demonstrate a polarization-insensitive, broadband titanium dioxide achromatic metalens for applications in the near-infrared biological imaging. A large-scale fabrication technology has been developed to produce titanium dioxide nanopillars with record-high aspect ratios featuring pillar heights of 1.5 µm and ~90° vertical sidewalls. The demonstrated metalens exhibits dramatically increased group delay range, and the spectral range of achromatism is substantially extended to the wavelength range of 650-1000 nm with an average efficiency of 77.1%-88.5% and a numerical aperture of 0.24-0.1. This research paves a solid step towards practical applications of flat photonics.
1
A large-scale fabrication process produces titanium dioxide nanopillars with 1.5 µm heights and approximately 90° vertical sidewalls, enabling high aspect ratios.
2
Across this range, the metalens reaches an average efficiency of 77.1%–88.5% with numerical apertures from 0.24 to 0.1.
3
The demonstrated performance addresses efficiency and bandwidth limitations that have constrained metalens imaging in the biological transparency window.
4
The metalens achieves an extended achromatic wavelength range of 650–1000 nm by providing a substantially increased group-delay range.
5
The study experimentally demonstrates a polarization-insensitive, broadband titanium dioxide achromatic metalens for near-infrared biological imaging.

a polarization-insensitive broadband titanium dioxide achromatic metalens for near-infrared biological imaging

the metalens’s broadband achromatic focusing performance, including spectral achromatism, focusing efficiency, numerical aperture, and group-delay range across 650–1000 nm

Publication Details
Publication Date
2021-09-21
Journal
Publisher
ISSN
Cited by
384
Access Type
Author Information
Authors
Yujie Wang
Qinmiao Chen
Wenhong Yang
Ziheng Ji
Limin Jin
Xing Ma
Qinghai Song
Alexandra Boltasseva
Jiecai Han
Vladimir M. Shalaev
Shumin Xiao
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%