4.6 Article

Complete Control of Multichannel, Angle-Multiplexed, and Arbitrary Spatially Varying Polarization Fields

Journal

ADVANCED OPTICAL MATERIALS
Volume 8, Issue 6, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adom.201901674

Keywords

angle-multiplexed polarization metaholography; coherent pixel metasurfaces; dual-way polarization switching; optical polarization knot profiles; vectorial print images

Funding

  1. National Key Research and Development Program of China [2017YFA0206002]
  2. National Natural Science Foundation of China (NSFC)-Chinese Academy of Sciences (CAS) Joint Fund for large-scale scientific facilities [U1832217]

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In recent years, much effort is dedicated to the generation of vectorial optical fields with an arbitrary spatially varying polarization distribution by means of metasurfaces. However, simultaneous and independent control of the amplitude, phase, and polarization is still challenging, especially for the multichannel generation of a vectorial optical field with an angle-multiplexed functionality. Here, a facile route, called coherent pixel polarization metaholography, is proposed to realize multichannel, angle-multiplexed, and arbitrary spatially varying polarization fields and demonstrate how to enable a fully independent realization of full Poincare beams (lemon, start, spider, and web beams), dual-way switching print images, vectorial print images, and optical polarization knot profiles. Importantly, the demonstrated angle-multiplexed metasurfaces have an independently controllable handedness and azimuth and can possess up to four channels. Such angle-multiplexed multichannel arbitrary spatial polarization fields may enable various applications, including optical dynamic displays, information communication, optical encryption, and quantum experiments.

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