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High-efficiency heterostructure thermionic coolers

机译:高效异质结构热电子冷却器

摘要

A heterostructure thermionic cooler and a method for making thermionic coolers, employing a barrier layer of varying conduction bandedge for n-type material, or varying valence bandedge for p-type material, that is placed between two layers of material. The barrier layer bandedge is at least kBT higher than the Fermi level of the semiconductor layer, which allows only selected, “hot” electrons, or electrons of high enough energy, across the barrier. The barrier layer is constructed to have an internal electric field such that the electrons that make it over the initial barrier are assisted in travel to the anode. Once electrons drop to the energy level of the anode, they lose energy to the lattice, thus heating the lattice at the anode. The barrier height of the barrier layer is high enough to prevent the electrons from traveling in the reverse direction.
机译:一种异质结构热电子冷却器和一种用于制造热电子冷却器的方法,该方法采用放置在两层材料之间的势垒层,该势垒层用于n型材料,其导电带的边沿变化,或者用于p型材料,其价带的边界带,其价带不同。阻挡层带边缘至少比半导体层的费米能级高k B T,这仅允许选择的“热”层。电子或能量足够高的电子穿过势垒。势垒层被构造成具有内部电场,使得使其越过初始势垒的电子被协助行进到阳极。一旦电子下降到阳极的能级,它们就会向晶格损失能量,从而在阳极上加热晶格。势垒层的势垒高度足够高以防止电子沿相反方向行进。

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