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首页> 外文期刊>Journal of the Korean Physical Society >Single-site and cellular dynamical mean-field theory of the Anderson-Hubbard model
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Single-site and cellular dynamical mean-field theory of the Anderson-Hubbard model

机译:Anderson-Hubbard模型的单点和单元动力平均场理论

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We study the Anderson-Hubbard model to examine the interplay between the disordered potential and the Hubbard interactions. We use the dynamical mean-field theory (DMFT) with an exact diagonalization as an impurity solver to effectively deal with the quantum fluctuations due to the local interactions. In order to characterize the paramagnetic metal-insulator transition in disordered systems, we compute the typical local density of states, as well as the arithmetically-averaged local density of states. Our approach is found to reproduce the characteristic features of the metal-insulator transition in infinite dimensions, such as the existence of the disorder-driven metallic phase for moderate values of disorder strength and interactions, as observed in earlier studies. In two dimensions, the system turns out to exhibit more insulating behavior when we increase the cluster size in the cellular DMFT. The metallic phase, which is induced from weak Mott insulators by the introduction of a disordered potential, is not observed in two dimensions.
机译:我们研究了安德森-哈伯德模型,以检查无序电势与哈伯德相互作用之间的相互作用。我们使用具有精确对角线化的动态平均场理论(DMFT)作为杂质求解器,以有效处理由于局部相互作用而引起的量子涨落。为了表征无序系统中顺磁性金属-绝缘体的跃迁,我们计算了典型的状态局部密度,以及算术平均的状态局部密度。我们的方法被发现可以在无限的维度上重现金属-绝缘体转变的特征,例如在无序强度和相互作用的中等数值下,由无序驱动的金属相的存在,如先前研究中所观察到的。在二维中,当我们增加蜂窝DMFT中的簇大小时,该系统显示出更多的绝缘行为。在二维中没有观察到由弱的Mott绝缘子通过引入无序电势而感应出的金属相。

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