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首页> 外文期刊>The Journal of Chemical Physics >Excited-state Wigner crystals
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Excited-state Wigner crystals

机译:兴奋状态的无冠晶体

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摘要

Wigner crystals (WCs) are electronic phases peculiar to low-density systems, particularly in the uniform electron gas. Since its introduction in the early twentieth century, this model has remained essential to many aspects of electronic structure theory and condensed-matter physics. Although the (lowest-energy) ground-state WC (GSWC) has been thoroughly studied, the properties of excitedstate WCs (ESWCs) are basically unknown. To bridge this gap, we present a well-defined procedure to obtain an entire family of ESWCs in a one-dimensional electron gas using a symmetry-broken mean-field approach. While the GSWC is a commensurate crystal (i.e., the number of density maxima equals the number of electrons), these ESWCs are incommensurate crystals exhibiting more or less maxima. Interestingly, they are lower in energy than the (uniform) Fermi fluid state. For some of these ESWCs, we have found asymmetrical band gaps, which would lead to anisotropic conductivity. These properties are associated with unusual characteristics in their electronic structure. Published by AIP Publishing.
机译:Wigner晶体(WCS)是低密度系统特有的电子相,特别是在均匀的电子气体中。自二十世纪初介绍以来,该模型对电子结构理论和凝聚力物理的许多方面至关重要。虽然已经彻底研究了(最低能量)地态WC(GSWC),但兴奋剂WCS(ESWCS)的性质基本上是未知的。为了弥合这种差距,我们介绍了一种明确的过程,以使用对称破碎的平均场方法在一维电子气体中获得整个ESWC系列。虽然GSWC是相称晶体(即,密度最大值的数量等于电子的数量),但这些ESWC是表现出或多或少的最大值的中非晶体。有趣的是,它们的能量低于(均匀)费米流体状态。对于其中一些ESWC,我们发现了不对称的带隙,这将导致各向异性的电导率。这些属性与电子结构中的异常特征相关联。通过AIP发布发布。

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