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首页> 外文期刊>International Journal of Heat and Mass Transfer >Near-field radiative transfer by bulk hyperbolic polaritons across vacuum gap
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Near-field radiative transfer by bulk hyperbolic polaritons across vacuum gap

机译:真空间隙散装双曲极性官近场散热转移

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摘要

Thermal radiation has always been treated as a surface phenomenon. A recent study has demonstrated that new radiation channels, the hyperbolic phonon polaritons, can contribute to heat transfer inside bulk hyperbolic materials with a heat flux comparable to conduction. For near-field radiative transfer across a vacuum gap between two hyperbolic materials, hyperbolic phonon polaritons have been considered as surface modes that are responsible for heat transfer enhancement. Here, we analyze near-field radiative transfer due to hyperbolic phonon polaritons, driven by temperature gradient inside the bulk materials. We develop a mesoscale many-body scattering approach to account for the role of hyperbolic phonon polaritons in radiative transfer in the bulk and across a vacuum gap. Our study points out the equivalency between the bulk-generated mode and the surface mode in the absence of a temperature gradient in the material, and hence provide a unified framework for near-field radiative transfer by hyperbolic phonon polaritons. The results also elucidate contributions of the bulk-generated mode and the bulk temperature . profile in the enhanced near-field radiative transfer.
机译:热辐射一直被视为表面现象。最近的一项研究表明,新的辐射通道,双曲声子极性官,可以有助于与传导相当的热通量的散装双曲材料内的传热。对于在两个双曲材料之间的真空差距之间的近场辐射转移,双曲声子Phonon Polaritons被认为是负责传热增强的表面模式。在这里,我们分析由于散装材料内的温度梯度驱动而导致的近场辐射转移。我们开发了Mesoscale许多身体散射方法,以解释双曲声子Phonon Pargitibon在散装中的辐射转移和真空隙中的作用。我们的研究指出了在材料中没有温度梯度的情况下,在材料中散装产生的模式和表面模式之间的等效,因此提供了由双曲声子偏振子的近场辐射传输的统一框架。结果还阐明了本体产生的模式和散装温度的贡献。提高近场辐射转移的配置文件。

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