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Radiative heat transfer at the nanoscale

机译:纳米级的辐射热传递

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摘要

Heat can be exchanged between two surfaces through emission and absorption of thermal radiation. It has been predicted theoretically that for distances smaller than the peak wavelength of the blackbody spectrum, radiative heat transfer can be increased by the contribution of evanescent waves(1-8). This contribution can be viewed as energy tunnelling through the gap between the surfaces. Although these effects have already been observed(9-14), a detailed quantitative comparison between theory and experiments in the nanometre regime is still lacking. Here, we report an experimental setup that allows measurement of conductance for gaps varying between 30 nm and 2.5 mu m. Our measurements pave the way for the design of submicrometre nanoscale heaters that could be used for heat-assisted magnetic recording or heat-assisted lithography.
机译:可以通过辐射的吸收和吸收在两个表面之间进行热交换。从理论上讲,对于小于黑体光谱峰值波长的距离,by逝波的贡献可以增加辐射热传递(1-8)。可以将这种贡献视为通过表面之间间隙的能量隧穿。尽管已经观察到了这些影响(9-14),但仍缺乏在纳米范围内理论与实验之间的详细定量比较。在这里,我们报告了一个实验装置,该装置可以测量间隙在30 nm至2.5μm之间的电导。我们的测量为亚微米级纳米加热器的设计铺平了道路,该加热器可用于热辅助磁记录或热辅助光刻。

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