Litcius/Paper detail

Adjustable Trifunctional Mid-Infrared Metamaterial Absorber Based on Phase Transition Material VO2

Yi Lian, Yuke Li, Yipan Lou, Zexu Liu, Chang Jiang, Zheng-Da Hu, Jicheng Wang

2023Nanomaterials14 citationsDOIOpen Access PDF

Abstract

In this paper, we demonstrate an adjustable trifunctional absorber that can achieve the conversion of broadband, narrowband and superimposed absorption based on the phase transition material vanadium dioxide (VO2) in the mid-infrared domain. The absorber can achieve the switching of multiple absorption modes by modulating the temperature to regulate the conductivity of VO2. When the VO2 film is adjusted to the metallic state, the absorber serves as a bidirectional perfect absorber with switching capability of wideband and narrowband absorption. The superposed absorptance can be generated while the VO2 layer is converted to the insulating state. Then, we introduced the impedance matching principle to explain the inner mechanism of the absorber. Our designed metamaterial system with a phase transition material is promising for sensing, radiation thermometer and switching devices.

Topics & Concepts

Materials scienceMetamaterialNarrowbandAbsorptanceAbsorption (acoustics)OptoelectronicsWidebandMetamaterial absorberImpedance matchingPhase transitionInfraredResonatorOpticsBroadbandElectrical impedanceComposite materialTunable metamaterialsElectrical engineeringCondensed matter physicsPhysicsReflectivityEngineeringMetamaterials and Metasurfaces ApplicationsThermal Radiation and Cooling TechnologiesTransition Metal Oxide Nanomaterials