Dual-layer achromatic metalens design with an effective Abbe number
Проектирование двухслойной ахроматической металинзы с эффективным числом Аббе
2020-08-13
SCID: 54.1/sawg2zh9
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dielectric cylindrical meta-atomsdispersion compensationdual-layer achromatic metalenseffective Abbe numberfocusing efficiency
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Abstract (AI)
Planar achromatic metalenses with a thickness of the order of wavelength have attracted much attention for their potential applications in ultra-compact optical devices. However, realizing single-layer achromatic metalenses across a wide bandwidth requires that the corresponding meta-atoms have complex cross-sections for correct phase profile and dispersion compensation. Herein, we introduce an effective Abbe number and use lens maker equations to design a dual-layer achromatic metalens in which we compensate the dispersion by using a plano-convex liked metalens combined with a plano-concave liked metalens. The stacked metalens are designed based on simple high refractive index dielectric cylindrical meta-atoms with different radii, which simplify the design and fabrication processes. We demonstrate that a dual-layer achromatic metalens has a small focal length difference across the visible wavelength range and an average focusing efficiency above 50%, which proves that the design method is promising for many potential applications in multi-functional flat optical devices.
Key Findings
1
An effective Abbe number combined with lens-maker equations enables dispersion compensation in a dual-layer achromatic metalens.
2
Simple high-refractive-index dielectric cylindrical meta-atoms with different radii simplify the metalens design and fabrication.
3
The demonstrated dual-layer metalens exhibits a small focal-length difference across visible wavelengths and average focusing efficiency above 50%.
4
The design combines plano-convex-like and plano-concave-like metalenses to achieve achromatic focusing across the visible wavelength range.
Research Object
dual-layer achromatic metalens composed of stacked plano-convex-like and plano-concave-like dielectric metalenses
Research Subject
broadband chromatic-dispersion compensation, focal-length uniformity, and focusing efficiency across the visible wavelength range
Publication Details
Publication Date
2020-08-13
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