| Literature DB >> 35617434 |
Ningbin Mao1,2, Guanqing Zhang1,2, Yutao Tang1, Yang Li1, Zixian Hu1, Xuecai Zhang1, Kingfai Li1, Kokwai Cheah2, Guixin Li1,3.
Abstract
Vectorial optical holography represents a solution to control the polarization and amplitude distribution of light in the Fourier space. While vectorial optical holography has been experimentally demonstrated in the linear optical regime, its nonlinear counterpart, which can provide extra degrees of freedom of light-field manipulation through the frequency conversion processes, remains unexplored. Here, we experimentally demonstrate the nonlinear vectorial holography through the second harmonic generation process on a quad-atom plasmonic metasurface. The quad-atom metasurface consists of gold meta-atoms with threefold rotational symmetry. Based on the concept of nonlinear geometric phase, we can simultaneously manipulate the phase and amplitude of the left and right circularly polarized second harmonic waves generated from the quad-atom metasurface. By superposing the two orthogonal polarization components, the quad-atom metasurface can produce nonlinear holographic images with vectorial polarization distributions. The proposed metasurface platform may have important applications in vectorial polarization nonlinear optical source, high-capacity optical information storage, and optical encryption.Entities:
Keywords: metasurface; plasmonics; vectorial holography
Year: 2022 PMID: 35617434 PMCID: PMC9295796 DOI: 10.1073/pnas.2204418119
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 12.779