Vector Vortex Beam Generation with a Single Plasmonic Metasurface
Author(s) -
Fuyong Yue,
Dandan Wen,
Jingtao Xin,
Brian D. Gerardot,
Jensen Li,
Xianzhong Chen
Publication year - 2016
Publication title -
acs photonics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.735
H-Index - 89
ISSN - 2330-4022
DOI - 10.1021/acsphotonics.6b00392
Subject(s) - superposition principle , optics , polarization (electrochemistry) , physics , vortex , plasmon , angular momentum , lithography , optoelectronics , chemistry , quantum mechanics , thermodynamics
Despite a plethora of applications ranging from quantum memories to high-resolution lithography, the current technologies to generate vector vortex beams (VVBs) suffer from less efficient energy use, poor resolution, low damage threshold, and bulky size, preventing further practical applications. We propose and experimentally demonstrate an approach to generate VVBs with a single metasurface by locally tailoring phase and transverse polarization distribution. This method features the spin–orbit coupling and the superposition of the converted part with an additional phase pickup and the residual part without a phase change. By maintaining the equal components for the converted part and the residual part, the cylindrically polarized vortex beams carrying orbital angular momentum are experimentally demonstrated based on a single metasurface at subwavelength scale. The proposed approach provides unprecedented freedom in engineering the properties of optical waves with high-efficiency light utilization and a m...
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