TY - JOUR
T1 - Light Field Transformation of Metasurface Based on Arbitrary Jones Matrix
AU - Zhang, Xiaotong
AU - Li, Xin
AU - Zhang, Shifei
AU - Zhao, Ruizhe
AU - Wang, Yiqun
AU - Chen, Chen
AU - Wang, Yongtian
AU - Huang, Lingling
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024
Y1 - 2024
N2 - Metasurfaces are ultra-thin micro-nano elements, have abundant freedoms, and are widely used in light field transformation. The Jones matrix of single-layer birefringent metasurfaces have at most 6 degrees of freedom, which limits the richness and diversity of light field transformation. Bilayer metasurfaces have more design channels and functionality than single-layer metasurfaces. By mathematical derivation, the decomposition method of the bilayer metasurface unitary Jones matrix is provided. Further, inspired by double-phase holography, arbitrary complex Jones matrix is decomposed and realized by bilayer metasurface and achieves analytical decoupling of all 4 complex components of the Jones matrix. As the theoretical verification, spin-orbit angular momentum mapping and four-channel complex holography are realized by the bilayer metasurface. The decomposition method is completely analytical, universal, and easy to implement. It is of great significance for the transformation of light field, information transmission, and optical encryption based on metasurfaces.
AB - Metasurfaces are ultra-thin micro-nano elements, have abundant freedoms, and are widely used in light field transformation. The Jones matrix of single-layer birefringent metasurfaces have at most 6 degrees of freedom, which limits the richness and diversity of light field transformation. Bilayer metasurfaces have more design channels and functionality than single-layer metasurfaces. By mathematical derivation, the decomposition method of the bilayer metasurface unitary Jones matrix is provided. Further, inspired by double-phase holography, arbitrary complex Jones matrix is decomposed and realized by bilayer metasurface and achieves analytical decoupling of all 4 complex components of the Jones matrix. As the theoretical verification, spin-orbit angular momentum mapping and four-channel complex holography are realized by the bilayer metasurface. The decomposition method is completely analytical, universal, and easy to implement. It is of great significance for the transformation of light field, information transmission, and optical encryption based on metasurfaces.
KW - bilayer metasurfaces
KW - light field transformation
KW - metasurface holography
KW - multiplex holography
KW - spin-orbit mapping
UR - http://www.scopus.com/inward/record.url?scp=85200046152&partnerID=8YFLogxK
U2 - 10.1002/lpor.202400539
DO - 10.1002/lpor.202400539
M3 - Article
AN - SCOPUS:85200046152
SN - 1863-8880
JO - Laser and Photonics Reviews
JF - Laser and Photonics Reviews
ER -