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Functional renormalization group study of orbital fluctuation mediated superconductivity: Impact of the electron-boson coupling vertex corrections

机译:轨道涨落介导的超导性的功能重整化小组研究:电子-玻色子耦合顶点校正的影响

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摘要

In various multiorbital systems, the emergence of the orbital fluctuations and their role on the pairing mechanism attract increasing attention. To achieve deep understanding on these issues, we perform a functional renormalization group (fRG) study for the two-orbital Hubbard model. The vertex corrections for the electron-boson coupling (U-VC), which are dropped in the Migdal-Eliashberg gap equation, are obtained by solving the RG equation. We reveal that the dressed electron-boson coupling for the charge channel (U) over cap (c)(eff) becomes much larger than the bare Coulomb interaction (U) over cap (0) due to the U-VC in the presence of moderate spin fluctuations. For this reason, the attractive pairing interaction due to the charge or orbital fluctuations is enlarged by the factor ((U) over cap (c)(eff) 1. In contrast, the spin fluctuation pairing interaction is suppressed by the spin-channel U-VC, because of the relation (U) over cap (s)(eff) (U) over cap (0). The present study demonstrates that the orbital or charge fluctuation pairing mechanism can be realized in various multiorbital systems thanks to the U-VC, such as in Fe-based superconductors.
机译:在各种多轨道系统中,轨道波动的出现及其在配对机制中的作用引起了越来越多的关注。为了对这些问题有更深入的了解,我们对两轨道Hubbard模型进行了功能重整化小组(fRG)研究。通过解决RG方程,获得了在Migdal-Eliashberg间隙方程中下降的电子-玻色子耦合(U-VC)的顶点校正。我们揭示了由于存在下的U-VC,盖(c)(eff)上的电荷通道(U)的修整电子-玻色子耦合变得比盖(0)上的裸库仑相互作用(U)大得多。适度的自旋波动。因此,由于电荷或轨道波动引起的有吸引力的配对相互作用被扩大了((U)超过上限(c)(eff)1。)。相反,自旋波动配对相互作用被自旋通道U-VC,因为(U)超过上限(s)(eff)(U)超过上限(0)的关系。本研究表明,可以在各种多轨道系统中实现轨道或电荷涨落配对机制多亏了U-VC,例如铁基超导体。

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