伪装
红外线的
热发射率
热辐射
材料科学
红外窗口
辐射冷却
热的
辐射
发射率
热红外光谱
辐射传输
波长
光电子学
遥感
光学
计算机科学
物理
气象学
地质学
梁(结构)
热力学
人工智能
作者
Huanzheng Zhu,Qiang� Li,Chunqi Zheng,Yú Hónɡ,Zhifei Xu,Han Wang,Weidong Shen,S. Kaur,Pintu Ghosh,Min Qiu
标识
DOI:10.1038/s41377-020-0300-5
摘要
High-temperature infrared (IR) camouflage is crucial to the effective concealment of high-temperature objects but remains a challenging issue, as the thermal radiation of an object is proportional to the fourth power of temperature (T4). Here, we experimentally demonstrate high-temperature IR camouflage with efficient thermal management. By combining a silica aerogel for thermal insulation and a Ge/ZnS multilayer wavelength-selective emitter for simultaneous radiative cooling (high emittance in the 5-8 μm non-atmospheric window) and IR camouflage (low emittance in the 8-14 μm atmospheric window), the surface temperature of an object is reduced from 873 to 410 K. The IR camouflage is demonstrated by indoor/outdoor (with/without earthshine) radiation temperatures of 310/248 K for an object at 873/623 K and a 78% reduction in with-earthshine lock-on range. This scheme may introduce opportunities for high-temperature thermal management and infrared signal processing.
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