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Mott-Hubbard transition in the mass-imbalanced Hubbard model

机译:MOT-HUBBARD在大众自动化州Hubbard模型中的过渡

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The mass-imbalanced Hubbard model represents a continuous evolution from the Hubbard to the Falicov-Kimball model. We employ dynamical mean field theory and study the paramagnetic metal-insulator transition, which has a very different nature for the two limiting models. Our results indicate that the metal-insulator transition rather resembles that of the Hubbard model as soon as a tiny hopping between the more localized fermions is switched on. At low temperatures we observe a first-order metal-insulator transition and a three peak structure. The width of the central peak is the same for the more and less mobile fermions when approaching the phase transition, which agrees with our expectation of a common Kondo temperature and phase transition for the two species.
机译:质量突出的哈贝德模型代表了哈伯德到法雷科夫-Kimball模型的连续演变。 我们采用动态平均场理论并研究了副古代金属 - 绝缘体过渡,这对于两个限制模型具有截然不同的性质。 我们的结果表明,一旦更局部化的费米氏型在接通之间的微小跳跃,金属绝缘体转变就会相当类似地类似于哈伯德模型的转变。 在低温下,我们观察一级金属绝缘体过渡和三个峰值结构。 当接近相变时,中央峰的宽度对于越来越少的移动费米,这与我们对这两个物种的共同Kondo温度和相变的期望同意。

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