Infrared Spectrum Regulation of One-Dimensional Photonic Crystal Thin Films with Ge2Sb2Te5

Z. Deng, Y. Su, Pengcheng Zhou, X. Wang, R. Gong
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Abstract

The active regulation of the infrared radiation is a focal point in the fields of energy saving, thermal camouflage and optical switching. In this paper, we conduct the research on broadband infrared radiation tunable films with phase change material Ge2Sb2Te5 (GST). By utilizing the property of variable refractive index of GST, we construct the GST/ZnS one-dimensional photonic crystal films with tunable infrared emissivity. The fabricated [GST/ZnS]4 film has a great switchable ability of infrared radiation with the tunable range of the emissivity in 3-5 μm waveband is 0.385. The infrared emissivity of the film is 0.159 when the GST is at crystalline state and 0.544 when the GST is at amorphous state. The broadband infrared radiation tunable film is expected to be extended to applications that rely on infrared radiation control technology, such as energy saving, thermal camouflage, and optical switching.
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Ge2Sb2Te5一维光子晶体薄膜的红外光谱调控
红外辐射的主动调节是节能、热伪装和光开关等领域的研究热点。本文采用相变材料Ge2Sb2Te5 (GST)对宽带红外辐射可调谐薄膜进行了研究。利用GST的可变折射率特性,构建了红外发射率可调的GST/ZnS一维光子晶体薄膜。制备的[GST/ZnS]4薄膜具有良好的红外辐射切换能力,在3 ~ 5 μm波段的发射率可调范围为0.385。当GST处于结晶状态时,薄膜的红外发射率为0.159,当GST处于非晶状态时,薄膜的红外发射率为0.544。宽带红外辐射可调谐薄膜有望扩展到依赖红外辐射控制技术的应用,如节能、热伪装和光开关。
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