首页> 外文期刊>The European physical journal, B. Condensed matter physics >Thermodynamic functions of electron gas on the semiconductor nanotube surface in a magnetic field
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Thermodynamic functions of electron gas on the semiconductor nanotube surface in a magnetic field

机译:磁场中半导体纳米管表面上电子气的热力学功能

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Thermodynamic functions have been calculated in the effective mass approximation for degenerate and nondegenerate electron gases on the semiconductor cylindrical nanotube surface in a longitudinal magnetic field. The Laplace transform linking the density of states and the statistical sum has been used. The thermodynamic quantities of degenerate electron gas undergo the de Haas-van Alphen oscillations with the electron Fermi energy change and the Aharonov-Bohm oscillations with the magnetic flux change within the semiconductor tube cross section. The quantities related to nondegenerate gas oscillate only with the change of magnetic flux. A peak has been found in the nondegenerate gas heat capacity-temperature diagram. A limiting process to 2D electron gas on plane has been carried out.
机译:对于在纵向磁场中的半导体圆柱形纳米管表面上的简并和非简并电子气,已经以有效质量近似计算了热力学函数。使用了将状态密度与统计和联系起来的拉普拉斯变换。简并的电子气的热力学量在半导体管的横截面内经历随着电子费米能变化的de Haas-van Alphen振荡和随着磁通量变化的Aharonov-Bohm振荡。与非简并气体有关的量仅随磁通量的变化而振荡。在非简并气体热容量-温度图中已发现一个峰值。已经对平面上的二维电子气进行了限制处理。

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