Phase Modulation with Electrically Tunable Vanadium Dioxide Phase-Change Metasurfaces

Kim, Y; Wu, PC; Sokhoyan, R; Mauser, K; Glaudell, R; Kafaie Shirmanesh, G; Atwater, HA

HERO ID

6308188

Reference Type

Journal Article

Year

2019

Language

English

PMID

31136191

HERO ID 6308188
In Press No
Year 2019
Title Phase Modulation with Electrically Tunable Vanadium Dioxide Phase-Change Metasurfaces
Authors Kim, Y; Wu, PC; Sokhoyan, R; Mauser, K; Glaudell, R; Kafaie Shirmanesh, G; Atwater, HA
Journal Nano Letters
Volume 19
Issue 6
Page Numbers 3961-3968
Abstract We report a dynamically tunable reflectarray metasurface that continuously modulates the phase of reflected light in the near-infrared wavelength range under active electrical control of the phase transition from semiconducting to semimetallic states. We integrate a vanadium dioxide (VO2) active layer into the dielectric gap of antenna elements in a reflectarray metasurface, which undergoes an insulator-to-metal transition upon resistive heating of the metallic patch antenna. The induced phase transition in the VO2 film strongly perturbs the magnetic dipole resonance supported by the metasurface. By carefully controlling the volume fractions of coexisting metallic and dielectric regions of the VO2 film, we observe a continuous shift of the phase of the reflected light, with a maximal achievable phase shift as high as 250°. We also observe a reflectance modulation of 23.5% as well as a spectral shift of the resonance position by 175 nm. The metasurface phase modulation is fairly broadband, yielding large phase shifts at multiple operation wavelengths.
Doi 10.1021/acs.nanolett.9b01246
Pmid 31136191
Wosid WOS:000471834900075
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English