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Updated: Jan 15, 2026

Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
Published on: December 27, 2012
Switchable and expandable mid-infrared broadband metasurface absorber for adaptive infrared stealth based on VO2
Ye Yuan1, Shaopei Wang2, Mengdan Qian2
1College of Physics, Changchun Normal University, Changchun 130032, China.
Abstract:
Dynamic thermal emission with broadband tunability has attracted increasing interest in energy and military fields. Here, a thermally switchable and expandable metasurface absorber with broadband mid-infrared emission is proposed based on a metallic resonant element and vanadium dioxide (VO2) phase change material film. Through the insulating-metal transition of VO2, the metasurface switches between "stealth" and "non-stealth" states across the mid-infrared spectrum, and even active tuning of the absorption bandwidth and resonant peak can be achieved. At room temperature, the absorber shows near-perfect broadband absorption in the long-wave infrared atmospheric window. At high temperatures, the absorption band moves toward 5-8 μm while the atmospheric window bands present low emissivity, allowing infrared camouflage and effective heat dissipation. The proposed metasurface absorber has simple structural geometry and broad, switchable spectral response in the infrared region, showing promising applications in thermal photonics, including information storage, infrared stealth, thermal imaging, and detectors.

