Department of Engineering, Reykjavik University, Menntavegur 1, IS-102 Reykjavik, Iceland.
Department of Theoretical Physics, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wroclaw, Poland.
Nanotechnology. 2023 Jun 1;34(33). doi: 10.1088/1361-6528/acd062.
We calculate the charge and heat currents carried by electrons, originating from a temperature gradient and a chemical potential difference between the two ends of tubular nanowires with different geometries of the cross-sectional areas: circular, square, triangular, and hexagonal. We consider nanowires based on InAs semiconductor material, and use the Landauer-Büttiker approach to calculate the transport quantities. We include impurities in the form of delta scatterers and compare their effect for different geometries. The results depend on the quantum localization of the electrons along the edges of the tubular prismatic shell. For example, the effect of impurities on the charge and heat transport is weaker in the triangular shell than in the hexagonal shell, and the thermoelectric current in the triangular case is several times larger than in the hexagonal case, for the same temperature gradient.
我们计算了由温度梯度和管状纳米线两端的化学势差引起的电子电荷和热流,这些纳米线具有不同的截面积几何形状:圆形、方形、三角形和六边形。我们考虑基于 InAs 半导体材料的纳米线,并使用 Landauer-Büttiker 方法来计算输运量。我们以 delta 散射体的形式包含杂质,并比较它们对不同几何形状的影响。结果取决于电子在管状棱柱壳边缘的量子局域化。例如,对于相同的温度梯度,杂质对三角形壳中电荷和热输运的影响比六边形壳中弱,并且在三角形情况下的热电流比在六边形情况下大几倍。