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Mott transition in the dynamic Hubbard model within slave boson mean-field approach

机译:奴隶玻色子均场方法中动态Hubbard模型的Mott过渡

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摘要

At zero temperature, the Kotliar-Ruckenstein slave boson mean-field approach is applied to the dynamic Hubbard model. In this paper, the influences of the dynamics of the auxiliary boson field on the Mott transition are investigated. At finite boson frequency, the Mott-type features of the Hubbard model is found to be enhanced by increasing the pseudospin coupling parameter g. For sufficiently large pseudospin coupling g, the Mott transition occurs even for modest values of the bare Hubbard interaction U. The lack of electron-hole symmetry is highlighted through the quasiparticle weight. Our results are in good agreement with the ones obtained by two-site dynamical mean-field theory and determinant quantum Monte Carlo simulation.
机译:在零温度下,将Kotliar-Ruckenstein奴隶玻色子均场方法应用于动态Hubbard模型。在本文中,研究了玻色子辅助场动力学对莫特跃迁的影响。发现在有限玻色子频率下,通过增加伪自旋耦合参数g可以增强Hubbard模型的Mott型特征。对于足够大的伪自旋耦合g,即使对于裸露的哈伯德相互作用U的适度值,也会发生Mott跃迁。通过准粒子重量突出了缺乏电子-空穴对称性。我们的结果与通过两点动力学平均场理论和行列式量子蒙特卡洛模拟获得的结果非常吻合。

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