Abstract

Metalenses consist of an array of optical nanoantennas on a surface capable of manipulating the properties of an incoming light wavefront. Various flat optical components, such as polarizers, optical imaging encoders, tunable phase modulators and a retroreflector, have been demonstrated using a metalens design. An open issue, especially problematic for colour imaging and display applications, is the correction of chromatic aberration, an intrinsic effect originating from the specific resonance and limited working bandwidth of each nanoantenna. As a result, no metalens has demonstrated full-colour imaging in the visible wavelength. Here, we show a design and fabrication that consists of GaN-based integrated-resonant unit elements to achieve an achromatic metalens operating in the entire visible region in transmission mode. The focal length of our metalenses remains unchanged as the incident wavelength is varied from 400 to 660 nm, demonstrating complete elimination of chromatic aberration at about 49% bandwidth of the central working wavelength. The average efficiency of a metalens with a numerical aperture of 0.106 is about 40% over the whole visible spectrum. We also show some examples of full-colour imaging based on this design.

Keywords

Achromatic lensOpticsOptoelectronicsMaterials scienceVisible spectrumPolarizerWavelengthWavefrontBroadbandChromatic aberrationChromatic scalePhysicsBirefringence

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Publication Info

Year
2018
Type
article
Volume
13
Issue
3
Pages
227-232
Citations
1646
Access
Closed

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1646
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7
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Cite This

Shuming Wang, Pin Chieh Wu, Vin‐Cent Su et al. (2018). A broadband achromatic metalens in the visible. Nature Nanotechnology , 13 (3) , 227-232. https://doi.org/10.1038/s41565-017-0052-4

Identifiers

DOI
10.1038/s41565-017-0052-4
PMID
29379204

Data Quality

Data completeness: 77%