Institut für Physik, Carl von Ossietzky Universität, D-26111 Oldenburg, Germany.
Phys Rev Lett. 2013 Mar 29;110(13):134302. doi: 10.1103/PhysRevLett.110.134302. Epub 2013 Mar 28.
We have investigated the influence of thin films of a dielectric material on the near-field mediated heat transfer at the fundamental limit of single monolayer islands on a metallic substrate. We present spatially resolved measurements by near-field scanning thermal microscopy showing a distinct enhancement in heat transfer above NaCl islands compared to the bare Au(111) film. Experiments at this subnanometer scale call for a microscopic theory beyond the macroscopic fluctuational electrodynamics used to describe near-field heat transfer today. The method facilitates the possibility of developing designs of nanostructured surfaces with respect to specific requirements in heat transfer down to a single atomic layer.
我们研究了介电材料薄膜对金属衬底上单分子层岛近场介导热传递的影响。我们通过近场扫描热显微镜进行了空间分辨测量,结果表明,与裸露的 Au(111)薄膜相比,NaCl 岛上方的热传递明显增强。在这个亚纳米尺度的实验需要超越当前用于描述近场热传递的宏观涨落电动力学的微观理论。这种方法为纳米结构表面的设计提供了可能性,使其能够满足特定的热传递要求,甚至可以达到单原子层。