Ultrahigh precision laser nanoprinting based on defect-compensated digital holography for fast-fabricating optical metalenses

Author:

Jie Kaiwen1,Yao Zhuofan1,Zheng Yiyin1,Wang Minghui1,Yuan Diefeng1,Lin Zeda1,Chen Shantong1,Qin Fei1ORCID,Ou Huase2,Li Xiangping1,Cao Yaoyu1ORCID

Affiliation:

1. Institute of Photonics Technology, Jinan University

2. Jinan University

Abstract

The 3D structured light field manipulated by a digital-micromirror-device (DMD)-based digital hologram has demonstrated its superiority in fast-fabricating stereo nanostructures. However, this technique intrinsically suffers from defects of light intensity in generating modulated focal spots, which prevents from achieving high-precision micro/nanodevices. In this Letter, we have demonstrated a compensation approach based on adapting spatial voxel density for fabricating optical metalenses with ultrahigh precision. The modulated focal spot experiences intensity fluctuations of up to 3% by changing the spatial position, leading to a 20% variation of the structural dimension in fabrication. By altering the voxel density to improve the uniformity of the laser cumulative exposure dosage over the fabrication region, we achieved an increased dimensional uniformity from 94.4% to 97.6% in fabricated pillars. This approach enables fast fabrication of metalenses capable of sub-diffraction focusing of 0.44λ/NA with the increased mainlobe–sidelobe ratio from 1:0.34 to 1:0.14. A 6 × 5 supercritical lens array is fabricated within 2 min, paving a way for the fast fabrication of large-scale photonic devices.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Basic and Applied Basic Research Foundation of Guangdong Province

Publisher

Optica Publishing Group

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