Abstract
Active control of optical properties, particularly in the infrared (IR) regime, is critical for the regulation of thermal emission. However, most photonic structures and devices are based on a sophisticated design, making the dynamic control of their IR properties challenging. Here, we demonstrate self-adaptive control of IR absorptivity/emissivity in a simple stacked structure that consists of an oxide plasmonic nanocrystal layer and a phase change material (VO 2 ) layer, both fabricated via a solution process. The resonance wavelength and emission intensity for this structure depend on the phase of the VO 2 . This has potential applications for thermal emission structures (e.g., self-adaptive radiative cooling and IR camouflage). The proposed structure is a candidate low-cost and scalable active photonic platform.
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CITATION STYLE
Ono, M., Takata, M., Shirata, M., Yoshihiro, T., Tani, T., Naya, M., & Saiki, T. (2021). Self-adaptive control of infrared emissivity in a solution-processed plasmonic structure. Optics Express, 29(22), 36048. https://doi.org/10.1364/oe.442462
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