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Mean field theory of short-range order in strongly correlated low dimensional electronic systems

机译:均线低尺寸电子系统的短距号的平均场理论

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摘要

Mean field approach, although a generally reliable tool that captures major short-range correlations, often fails in symmetric low dimensional strongly correlated electronic systems like those described by the Hubbard model. In these situations a symmetry is almost broken. The problem is linked to the restoration of the symmetry due to strong fluctuations (both quantum and thermal) on all scales. The restoration of symmetry in statistical models of scalar order parameter fields was treated recently successfully on the Gaussian approximation level by symmetrization of the correlators. Here the idea is extended to fermionic systems in which the order parameter is composite. Furthermore, the precision of the correlators can be improved perturbatively. Such a scheme (based on covariant Gaussian approximation) is demonstrated on the one dimensional (1D) and 2D one band Hubbard models by comparison of the correlator with exact diagonalization and MC simulations, respectively.
机译:平均场方法,但​​是一种捕获主要短距离相关性的通常可靠的工具,通常在对称的低维度强烈相关的电子系统中失败,如船章模型所描述的那些。在这些情况下,对称性几乎被打破了。由于所有尺度上的强烈波动(量子和热量),问题与对称性的恢复有关。通过相关器的对称性,最近成功地处理了标量顺序参数字段的统计模型中对称性的恢复。这里,该想法扩展到Fermionic系统,其中订单参数是复合的。此外,可以扰乱相关器的精度。通过分别与具有精确的对角化和MC仿真的相关器进行比较,在一维(1D)和2D一频段模型上对这样的方案(基于协助高斯近似)。

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  • 来源
    《Physical review》 |2019年第12期|125140.1-125140.13|共13页
  • 作者单位

    Natl Chiao Tung Univ Electrophys Dept Hsinchu 30050 Taiwan;

    Peking Univ Sch Phys Beijing 100871 Peoples R China|Collaborat Innovat Ctr Quantum Matter Beijing 100871 Peoples R China;

    Beijing Normal Univ Dept Phys Beijing 100875 Peoples R China;

    Natl Taiwan Normal Univ Phys Dept Taipei 11677 Taiwan;

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