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Thermodynamics of a quasi-two-dimensional electron gas: Effects of magnetic fields, temperature and finite width

机译:准二维电子气的热力学:磁场,温度和有限宽度的影响

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摘要

The effects of nonzero temperature, finite thickness and magnetic fields on an electron gas confined in a quasi-two-dimensional (Q2DEG) region are studied. Finite values of the thickness allow the existence of energy bands and give new characteristics to the system. Here we study some thermodynamic and transport properties to get a better understanding of these effects. For electronic densities of the order of 10~(12) electrons per cm~2, and temperatures lower than 4 K, it is found that the chemical potential, free energy, magnetization, magnetic susceptibility and the inverse of Hall conductivity are independent of the thickness up to it reaches a threshold value. Systems with thicknesses a little above of the critical value lose the two-dimensional character, but they do not have the properties of a three-dimensional electron gas.
机译:研究了非零温度,有限厚度和磁场对封闭在准二维(Q2DEG)区域中的电子气的影响。厚度的有限值允许存在能带并赋予系统新的特性。在这里,我们研究了一些热力学和传输性质,以更好地理解这些效应。对于每cm〜2数量级10〜(12)个电子的电子密度和低于4 K的温度,发现化学势,自由能,磁化强度,磁化率和霍尔电导率的倒数与电子密度无关。厚度达到阈值。厚度略高于临界值的系统失去了二维特性,但没有三维电子气的特性。

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