Broadband achromatic thermal metalens with a wide field of view based on wafer-level monolithic processes

Author:

Chen Yen-Chun1ORCID,Hsu Wei-Lun1ORCID,Zeng Qiu-Chun12ORCID,Yu Chen-Yi1ORCID,Chen Pin-Do1ORCID,Chen Che-Chin2ORCID,Lin Yu-Hsin2ORCID,Chen Fong-Zhi2ORCID,Wang Chih-Ming13ORCID

Affiliation:

1. Department of Optics and Photonics, National Central University 1 , Taoyuan 320371, Taiwan

2. Taiwan Instrument Research Institute, National Applied Research Laboratories 2 , Hsinchu 30076, Taiwan

3. Optical Science Center, National Central University 3 , Taoyuan 320371, Taiwan

Abstract

We present a monolithic metalens free of chromatic aberration over the 8–12 μm wavelength range for thermal imaging. The metalens consists of nano-donut-pillars for dispersion engineering. The proposed metalens design is based on a telecentric optical system, which effectively eliminates off-focus distortion and aberration, enhancing overall imaging quality. Offering a 90° field of view, the metalens ensures uniform focal spot sizes within a 45° field angle across the working wavelength. This enables the capture of high-quality thermal images with sharp images and minimal distortion. With a diameter of 5.75 mm, the metalens is suitable for integration into commercial thermal imaging cameras. The nano-donut-pillar structure of the metalens allows for relatively straightforward mass production, involving i-line stepper lithography and silicon deep etching processes.

Funder

National Science and Technology Council

Publisher

AIP Publishing

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