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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Differential entropy per particle in Dirac semimetals in external magnetic field
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Differential entropy per particle in Dirac semimetals in external magnetic field

机译:外部磁场中DIDAC半颗粒中的差分熵

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摘要

We obtain a general expression for the differential entropy per particle (DEP) for three-dimensional Dirac systems as a function of chemical potential, temperature and magnetic field. It is shown that in the presence of magnetic field the dependence of DEP on the chemical potential near a charge neutral point is quite different from the corresponding dependence in graphene. Specifically, we observe a flat region with almost zero DEP near the charge neutral point which grows with the increase of the magnetic field followed then by decreasing oscillations due to contributions from the Landau levels. In contrast, in graphene there is a sharp peak observed for the chemical potential in the temperature vicinity of the Dirac point.
机译:我们为三维DIRAC系统的差分熵(DEP)获得了一般表达,作为化学电位,温度和磁场的函数。 结果表明,在磁场的存在下,DEP对电荷中性点附近的化学电位的依赖性与石墨烯中的相应依赖性非常不同。 具体而言,我们观察到具有几乎零Dep的平坦区域,附近的电荷中性点随着磁场的增加而增加,然后通过来自Landau水平的贡献而降低振荡。 相反,在石墨烯中,在DIRAC点的温度附近,观察到尖峰。

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