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High Contrast Far-Field Radiative Thermal Diode

机译:高对比度远场辐射热敏二极管

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摘要

We propose a theoretical concept of a far-field radiative thermal rectification device that uses a phase change material to achieve a high degree of asymmetry in radiative heat transfer. The proposed device has a multilayer structure on one side and a blackbody on other side. The multilayer structure consists of transparent thin film of KBr sandwiched between a thin film of VO2 and a reflecting layer of gold. When VO2 is in its insulating phase, the structure is highly reflective due to the two transparent layers on highly reflective gold. When VO2 is in the metallic phase, Fabry-Perot type of resonance occurs and the tri-layer structure acts like a wide-angle antireflection coating achieved by destructive interference of partially reflected waves making it highly absorptive for majority of spectral range of thermal radiation. The proposed structure forms the active part of configuration that acts like a far-field radiative thermal diode. Thermal rectification greater than 11 is obtained for a temperature bias of 20 K, which is the highest rectification ever predicted for far-field radiative diode configurations.
机译:我们提出了一种远场辐射热整流装置的理论概念,该装置使用相变材料来实现辐射热传递中的高度不对称。所提出的装置在一侧具有多层结构而在另一侧具有黑体。多层结构由KBr透明薄膜夹在VO2薄膜和金反射层之间组成。当VO2处于绝缘状态时,由于高反射金上的两个透明层,该结构具有高反射性。当VO2处于金属相时,会发生Fabry-Perot型共振,并且三层结构的作用类似于通过部分反射波的相消干涉实现的广角抗反射涂层,使其对大部分热辐射光谱范围都具有高度吸收性。所提出的结构构成了配置的有效部分,其作用类似于远场辐射热敏二极管。对于20 K的温度偏置,可获得大于11的热整流,这是有史以来预测的远场辐射二极管配置的最高整流。

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