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Superconductivity, Antiferromagnetism, and Kinetic Correlation in Strongly Correlated Electron Systems

机译:强相关电子系统中的超导性,反铁磁性和动力学相关性

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We investigate the ground state of two-dimensional Hubbard model on the basis of the variational Monte Carlo method. We use wave functions that include kinetic correlation and doublon-holon correlation beyond the Gutzwiller ansatz. It is still not clear whether the Hubbard model accounts for high-temperature superconductivity. The antiferromagnetic correlation plays a key role in the study of pairing mechanism because the superconductive phase exists usually close to the antiferromagnetic phase. We investigate the stability of the antiferromagnetic state when holes are doped as a function of the Coulomb repulsionU. We show that the antiferromagnetic correlation is suppressed asUis increased exceeding the bandwidth. High-temperature superconductivity is possible in this region with enhanced antiferromagnetic spin fluctuation and pairing interaction.
机译:我们基于变分蒙特卡罗方法研究二维哈伯德模型的基态。我们使用的波函数包括Gutzwiller ansatz以外的动力学相关性和doublon-holon相关性。尚不清楚Hubbard模型是否解释了高温超导性。反铁磁相关在配对机理的研究中起着关键作用,因为超导相通常存在于反铁磁相附近。我们研究了根据库仑排斥U掺杂空穴时反铁磁态的稳定性。我们表明,随着铁的增加超过带宽,反铁磁相关性受到抑制。具有增强的反铁磁自旋波动和配对相互作用的区域可能具有高温超导性。

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