Water-Immersion Superoscillation Metalens

5 Pages Posted: 26 Sep 2022

See all articles by Junzheng Zhou

Junzheng Zhou

Chongqing University

Yi Zhou

Chongqing University

Fengliang Dong

National Center for Nanoscience and Technology

Kun Zhang

Chongqing University

Lihua Xu

National Center for Nanoscience and Technology

Zhiwei Song

National Center for Nanoscience and Technology

Zhengguo Shang

Chongqing University

Gaofeng Liang

Chongqing University

Zhihai Zhang

Chongqing University

Zhongquan Wen

Chongqing University

Luru Dai

National Center for Nanoscience and Technology

Weiguo Chu

National Center for Nanoscience and Technology

Gang Chen

Chongqing University

Abstract

Far-field super-resolution lenses are attractive due to their great potential in the application of label-free far-field optical super-resolution. In past decades, there has been a fast development in superoscillatory optical lenses, which allows engineering of optical point-spread functions in the far-field beyond the traditional Abbe diffraction limit. Up to date, the reported superoscillation focal spots are usually accompanied by huge sidebands with intensity tens times of that of the focal spot itself, especially when the spot size is smaller than 0.38 λ . However, it is of critical importance to reduce the spot size while maintaining comparatively small sidelobes for many practical applications. Here, we demonstrate a water-immersion superoscillatory metalens with a high-numerical aperture of 1.15. Experimental results show the generation of a super-resolution hot spot as small as 0.33 λ at a distance of 60 λ from the lens. More importantly, there is no significant sideband on the focal plane, and the strength of the sidelobes near the hot spot is lower than 13.3 % of the central lobe intensity. The deep compression of hot spot and the absence of large sidelobes offer a promising way to further improve the resolution of far-field label-free super-resolution microscopy.

Keywords: Water-immersion, Superoscillation metalens, Super-resolution microscopy, Deep-subwavelength focusing.

Suggested Citation

Zhou, Junzheng and Zhou, Yi and Dong, Fengliang and Zhang, Kun and Xu, Lihua and Song, Zhiwei and Shang, Zhengguo and Liang, Gaofeng and Zhang, Zhihai and Wen, Zhongquan and Dai, Luru and Chu, Weiguo and Chen, Gang, Water-Immersion Superoscillation Metalens. Available at SSRN: https://ssrn.com/abstract=4229850 or http://dx.doi.org/10.2139/ssrn.4229850

Junzheng Zhou

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Yi Zhou (Contact Author)

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Fengliang Dong

National Center for Nanoscience and Technology ( email )

China

Kun Zhang

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Lihua Xu

National Center for Nanoscience and Technology ( email )

China

Zhiwei Song

National Center for Nanoscience and Technology ( email )

China

Zhengguo Shang

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Gaofeng Liang

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Zhihai Zhang

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Zhongquan Wen

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Luru Dai

National Center for Nanoscience and Technology ( email )

China

Weiguo Chu

National Center for Nanoscience and Technology ( email )

China

Gang Chen

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

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