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用于近红外生物成像窗口的高效宽带消色差金属透镜。

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

机构信息

State Key Laboratory on Tunable laser Technology, Ministry of Industry and Information Technology Key Lab of Micro-Nano Optoelectronic Information System, Harbin Institute of Technology (Shenzhen), Shenzhen, 518055, P. R. China.

School of Electrical and Computer Engineering and Birck Nanotechnology Center, Purdue University, West Lafayette, 47907, IN, USA.

出版信息

Nat Commun. 2021 Sep 21;12(1):5560. doi: 10.1038/s41467-021-25797-9.

Abstract

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.

摘要

在过去的几年中,宽带消色差金属透镜因其在消费和工业产品中的应用潜力而受到了广泛的研究。尽管已经取得了重大进展,但技术相关的硅金属透镜的效率受到带隙以上固有材料损耗的限制。相反,最近提出的利用透明、高折射率材料(如二氧化钛)的消色差金属透镜受到厚度小的限制,在较长波长下显示出相对较低的聚焦效率。因此,基于金属透镜的生物透明窗口光学成像是迄今为止受到严重限制的。在这里,我们实验演示了一种用于近红外生物成像的偏振不敏感、宽带二氧化钛消色差金属透镜。已经开发了一种大规模的制造技术,用于制造具有创纪录高纵横比的二氧化钛纳米柱,其柱高为 1.5μm,垂直侧壁角度约为 90°。所展示的金属透镜具有显著增加的群延迟范围,消色差的光谱范围被大大扩展到 650-1000nm 的波长范围,平均效率为 77.1%-88.5%,数值孔径为 0.24-0.1。这项研究为平面光子学的实际应用迈出了坚实的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5da7/8455568/541a84f362ac/41467_2021_25797_Fig1_HTML.jpg

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