Affiliation:
1. Optics Valley Laboratory
2. Xiamen University
Abstract
Metasurfaces, which possess unprecedented capabilities in manipulating electromagnetic wavefronts, are promising for accurate complex amplitude modulation with a compact device. However, current strategy of complex amplitude modulation based on metasurfaces focuses on anisotropic unit design which is intrinsically constrained of polarization states. In this study, we propose a design methodology of polarization-independent metasurface which comprises an array of nanocylinders with various radii and heights. The effectiveness of the proposed scheme is verified using an optical vortex generator and a complex-amplitude hologram device. The straightforward, cost-effective, and polarization-independent design can provide robust and reliable solutions for wavefronts modulation in various optical applications.
Funder
National Key Research and Development Program of China
National Natural Science Foundation of China
Knowledge Innovation Program of Wuhan-Shuguang
Innovation research project of Optics Valley Laboratory
Subject
Atomic and Molecular Physics, and Optics
Cited by
7 articles.
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