Affiliation:
1. King Abdullah University of Science and Technology (KAUST)
2. Institute of Materials Research and Engineering
3. National Yunlin University of Science and Technology
Abstract
Metalenses are one of the most promising metasurface applications. However, all-dielectric reflective metalenses are rarely studied, especially regarding their off-axis focusing performance. After experimentally studying the material optical properties in this work, we propose reflective metalens based on titanium dioxide (TiO2) and silicon dioxide (SiO2), which operate at a visible wavelength of 0.633 µm. Unlike conventional reflective metalenses based on metallic mirrors, the proposed device was designed based on a modified parabolic phase profile and was integrated onto a dielectric distributed Bragg reflector periodic structure to achieve high reflectivity with five dielectric pairs. The focusing efficiency characteristics of the metalens were experimentally studied for beam angles of incidence between
0
∘
and
30
∘
. The results reveal that the focusing efficiency for the modified metalens design remains higher than 54%, which is higher than 50%, making it promising for photonic miniaturization and integration.
Funder
Competitive Research
GCC Research Council
King Abdullah University of Science and Technology
Subject
Atomic and Molecular Physics, and Optics
Cited by
13 articles.
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