Reconfigurable multilevel control of hybrid all-dielectric phase-change metasurfaces
All-dielectric metasurfaces comprising arrays of nanostructured high-refractive-index materials are re-imagining what is achievable in terms of the manipulation of light. However, the functionality of conventional dielectric-based metasurfaces is fixed by design; thus, their optical response is locked in at the fabrication stage. A far wider range of applications could be addressed if dynamic and reconfigurable control were possible. We demonstrate this here via the novel concept of hybrid metasurfaces, in which reconfigurability is achieved by embedding sub-wavelength inclusions of chalcogenide phase-change materials within the body of silicon nanoresonators. By strategic placement of an ultra-thin
Top-30
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Optica Publishing Group
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Wiley
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Elsevier
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American Chemical Society (ACS)
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MDPI
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Springer Nature
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China Aerospace Science and Industry Corporation
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.