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Vanadium dioxide based frequency tunable metasurface filters for realizing reconfigurable terahertz optical phase and polarization control. | LitMetric

AI Article Synopsis

  • Metasurfaces are advanced two-dimensional structures that can control electromagnetic fields, but progress in reconfigurable phase control has been limited.
  • This study introduces an active metasurface that adjusts its resonance frequency through a material called vanadium dioxide, which allows it to act as a phase shifter at THz frequencies.
  • The research also shows that by modifying the metasurface's properties, it can switch the polarization of transmitted waves from circular to nearly linear, showcasing its potential for versatile applications.

Article Abstract

Metasurfaces are two dimensional arrays of artificial subwavelength resonators, which can manipulate the amplitude and phase profile of incident electromagnetic fields. To date, limited progress has been achieved in realizing reconfigurable phase control of incident waves using metasurfaces. Here, an active metasurface is presented, whose resonance frequency can be tuned by employing insulator to metal transition in vanadium dioxide. By virtue of the phase jump accompanied by the resonance frequency tuning, the proposed metasurface acts as a phase shifter at THz frequency. It is further demonstrated that by appropriately tailoring the anisotropy of the metasurface, the observed phase shift can be used to switch the transmitted polarization from circular to approximately linear. This work thus shows potential for reconfigurable phase and polarization control at THz frequencies using vanadium dioxide based frequency tunable metasurfaces.

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Source
http://dx.doi.org/10.1364/OE.26.012922DOI Listing

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