Hybrid metal-VO2 metasurface exhibits polarization-sensitive tunable extraordinary THz transmission, with resonance redshift for y-polarization and broad suppression for x-polarization upon VO2 phase transition.
Multiple Fano resonances excitation on all-dielectric nanohole arrays metasurfaces
3 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
physics.optics 3years
2026 3verdicts
UNVERDICTED 3roles
method 2polarities
use method 2representative citing papers
A tunable high-Q Fano resonance meta-atom in all-dielectric metasurfaces enables spectrometer-less molecular fingerprint detection with higher precision via Q factors of ~2000.
Thermally reconfigurable extraordinary terahertz transmission is shown in two VO2-hybrid metasurface designs, achieving redshift from 1.02 to 0.82 THz or blueshift from 0.71 to 0.77 THz upon phase transition.
citing papers explorer
-
Polarization-sensitive tunable extraordinary terahertz transmission based on a hybrid metal-vanadium dioxide metasurface
Hybrid metal-VO2 metasurface exhibits polarization-sensitive tunable extraordinary THz transmission, with resonance redshift for y-polarization and broad suppression for x-polarization upon VO2 phase transition.
-
High-Q Fano resonance in all-dielectric metasurfaces for molecular fingerprint detection
A tunable high-Q Fano resonance meta-atom in all-dielectric metasurfaces enables spectrometer-less molecular fingerprint detection with higher precision via Q factors of ~2000.
-
Thermally reconfigurable extraordinary terahertz transmission using vanadium dioxide
Thermally reconfigurable extraordinary terahertz transmission is shown in two VO2-hybrid metasurface designs, achieving redshift from 1.02 to 0.82 THz or blueshift from 0.71 to 0.77 THz upon phase transition.