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The generation of vector beams using metasurfaces is crucial for the manipulation of light fields and has significant application potential, ranging from classical physics to quantum science. This paper introduces a novel dielectric metasurface composed of quarter-wave plate (QWP) meta-atoms, known as a QWP metasurface, designed to generate focused vector beams (VBs) of Bell-like states under right circularly polarized illumination. The propagation phase imparted on both the co- and cross-polarized components of the output field constructs hyperbolic and helical phase profiles with topological charge , whereas the Pancharatnam-Berry (PB) phase acts only on the cross-polarized component to construct another helical phase profile with topological charge . Thus, the co- and cross-polarized components form two orthogonal vector vortex (VV) modes with topological charges and + , respectively. When the parameter conditions are satisfied by matching the incident polarization chirality and topological charges and , the focused VBs of Bell-like states are generated by simultaneously manipulating the two VV modes, in contrast to existing QWP metasurfaces. The polarization states of the generated VBs are manipulated using the initial orientation angle of the meta-atom. Overall, this research provides an innovative strategy for metasurface design, enhancing the functionality of metasurface devices for a broader range of application scenarios.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11636375 | PMC |
http://dx.doi.org/10.1515/nanoph-2023-0923 | DOI Listing |
We describe a simple and effective method for the experimental generation of a variety of vector beams, including vector Laguerre-Gauss (vLG) and vector Bessel-Gauss (vBG), and experimentally realize vector Mathieu-Gauss (vMG) beams for the first time, to the best of our knowledge. We require only a single binary hologram on a Digital Micromirror Device (DMD) and use two orthogonally polarized beams with complex conjugate amplitudes to obtain independent control over both the phase and polarization structure of the generated fields. We characterize the beams using intensity measurements and Stokes polarimetry, and quantify their vector quality through concurrence.
View Article and Find Full Text PDFNat Commun
August 2025
School of Engineering, The University of Tokyo, Tokyo, Japan.
Vectorial optical mode converters that can transform orthogonal sets of multiple input vector beams into other orthogonal sets are attractive for various applications in optics and photonics. While multi-plane light conversion (MPLC) and metasurface technologies have been explored to individually address multiple spatial mode conversion and polarization mode manipulation, there has been no universal methodology to simultaneously convert a set of multiple vectorial modes with spatially non-uniform wavefronts and polarizations. Here, we present a general device framework to achieve complete vectorial mode conversion based on the MPLC concept incorporating multi-layer metasurfaces.
View Article and Find Full Text PDFDouble-ring perfect vortex beams (DR-PVBs), characterized by their unique double-ring radii that are independent of topological charges, have significant potential for applications in optical manipulation and communication. However, their wavefronts experience significant distortion when transmitted through strongly scattering media (SSM). In this study, we propose a method to reconstruct DR-PVBs through SSM using full vector transmission matrix-based vector point spread function (VTM-VPSF) engineering.
View Article and Find Full Text PDFThe transverse spin angular momentum (SAM) observed in evanescent waves, interference fields, and tightly focused vector beams is directly related to both academic research and technical applications. In this work, we theoretically propose and experimentally generate the generalized hybrid polarized vector beam (GHPVB), which superimposes the orthogonal electric field vector components of the two cylindrical vector beams with topological charges and , with an initial phase difference of between them. First, we investigate the longitudinal SAM separation in weakly focused GHPVBs.
View Article and Find Full Text PDFClose attention has been paid to vortex beams recently; designing and constructing artificial microstructures capable of deliberate generation and manipulation of vortex beams are vital for the development of on-chip functionalized optical devices. However, the generation of complex vortex beams often relies on the stacking of metasurfaces, which undoubtedly increases the difficulty of on-chip device design. Therefore, it is of great significance to construct complex vortex beams using a single metasurface.
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