材料科学
发射率
光电子学
辐射冷却
电介质
光子学
热光电伏打
谐振器
制作
宽带
光学
辐射传输
物理
热力学
病理
医学
替代医学
共发射极
作者
Chengjun Zou,Guanghui Ren,Md Muntasir Hossain,Shruti Nirantar,Withawat Withayachumnankul,Taimur Ahmed,Madhu Bhaskaran,Sharath Sriram,Miṅ Gu,Christophe Fumeaux
标识
DOI:10.1002/adom.201700460
摘要
Abstract Tailoring emissivity and absorptivity of structured material surfaces to match atmospheric transmission spectral windows can lead to radiative cooling that consumes no external energy. Recent advances in nanofabrication technology have facilitated progress in the realization of structured metasurfaces. In particular, subwavelength dielectric resonator metasurface supporting various resonance modes can be efficient absorbers. Here, such metasurfaces are proposed and experimentally demonstrated enhanced by metal loading to obtain strong broadband thermal emission over a wide angle at mid‐infrared frequencies. This concept results in passive cooling devices that can lower temperature by 10 °C below ambient temperature. Importantly, the utilization of standard constituent materials and processes lead to scalable fabrication compatible with silicon photonics integration, which will enable effective and energy‐efficient applications in passive cooling and thermodynamic control.
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