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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Thermodynamic functions of a relativistic electron gas on a tube in a magnetic field
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Thermodynamic functions of a relativistic electron gas on a tube in a magnetic field

机译:磁场中管中相对论电子气的热力学功能

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摘要

On the basis of the one-particle Dirac equation, an exact solution for the problem of the energy spectrum of a relativistic electron on the surface of a tube in a magnetic field is obtained. The spectra of a relativistic rotator and a relativistic electron in a two-dimensional electron gas are obtained in limiting cases. The density of electron states and the main thermodynamic functions of a relativistic electron gas on a tube in a magnetic field are calculated. These values experience Aharonov-Bohm oscillations and oscillations of the de Haas-van Alphen type with a change of the magnetic field and parameters of the problem. The asymptotics of thermodynamic functions at low- and high-temperatures are obtained. The results can be used in studies of nanotubes of a two-dimensional electron gas and in astrophysics.
机译:基于单粒子DIRAC方程,获得了用于在磁场中的管表面上的相对论电子的能谱问题的精确解决方案。 在限制的情况下,获得了相对论旋转器的光谱和二维电子气中的相对论电子。 计算电子状态的密度和磁场中管中的相对论电子气体的主要热力功能。 这些价值观经历了Aharonov-BoHM振荡和DE HAAS-VAN ALPHEN类型的振动,随着磁场的变化和问题的参数。 获得低温和高温热力学功能的渐近态。 结果可用于二维电子气体和天体物理学的纳米管的研究。

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