Low Temperature Laboratory, Aalto University, School of Science, PO Box 13500, 00076 Aalto, Finland.
Rep Prog Phys. 2012 Apr;75(4):046501. doi: 10.1088/0034-4885/75/4/046501. Epub 2012 Mar 9.
A superconductor with a gap in the density of states or a quantum dot with discrete energy levels is a central building block in realizing an electronic on-chip cooler. They can work as energy filters, allowing only hot quasiparticles to tunnel out from the electrode to be cooled. This principle has been employed experimentally since the early 1990s in investigations and demonstrations of micrometre-scale coolers at sub-kelvin temperatures. In this paper, we review the basic experimental conditions in realizing the coolers and the main practical issues that are known to limit their performance. We give an update of experiments performed on cryogenic micrometre-scale coolers in the past five years.
具有能隙的超导体或具有离散能级的量子点是实现电子片上冷却器的核心构建块。它们可以作为能量滤波器,只允许热准粒子从电极隧穿出来以进行冷却。自 20 世纪 90 年代初以来,该原理已在亚开尔文温度下的微尺度冷却器的研究和演示中得到了实验应用。在本文中,我们回顾了实现冷却器的基本实验条件以及已知限制其性能的主要实际问题。我们更新了过去五年中在低温微尺度冷却器上进行的实验。