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Effects of non-local spin fluctuations in the orbital-selective Mott transition

机译:轨道选择性莫特跃迁中非局部自旋涨落的影响

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Employing the extended dynamical mean field theory (EDMFT) and the quantum Monte Carlo (QMC) method, we investigate the effect of the spatial fluctuations in the two-band Hubbard model with anisotropic bandwidth in the vicinity of the Mott metal-insulator transition. At half filling, we demonstrate that while the inclusion of the non-local spin-spin interaction amounts to enhancing the correlation and suppressing the metallic character, the orbitally selective Mott transition (OSMT) remains stable for various strengths of the non-local correlation. The same is true when the system is doped away from half filling. The OSMT phase is evidenced at low dopant concentration and the simultaneous metallic phase emerges at overdoped regime. From the analysis of the self energy, it follows that the nature of the metallic phase upon doping violates the Fermi liquid character and persists at considerably large doping. Our theory also offers a new perspective for the investigation of the non-local fluctuation in the multi-orbital system within the single-site scheme.
机译:利用扩展的动力学平均场理论(EDMFT)和量子蒙特卡洛(QMC)方法,我们研究了在Mott金属-绝缘体跃迁附近具有各向异性带宽的两波段Hubbard模型中空间涨落的影响。在半填充时,我们证明尽管包含非局部自旋-自旋相互作用有助于增强相关性并抑制金属特性,但轨道选择性莫特跃迁(OSMT)对于非局部相关性的各种强度仍保持稳定。当系统从半填充掺杂时也是如此。证明OSMT相处于低掺杂剂浓度,同时金属相以超掺杂状态出现。从自能的分析可以看出,掺杂时金属相的性质违反了费米液体的特性,并在相当大的掺杂下持续存在。我们的理论也为研究单站点方案下多轨道系统的非局部波动提供了新的视角。

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