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Finite-energy spin fluctuations as a pairing glue in systems with coexisting electron and hole bands

机译:有限能量旋转波动作为具有共存电子和孔带的系统中的配对胶水

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摘要

We study, within the fluctuation-exchange approximation, the spin-fluctuation-mediated superconductivity in Hubbard-type models possessing electron and hole bands, and compare them with a model on a square lattice with a large Fermi surface. In the large Fermi surface model, superconductivity is more enhanced for better nesting for a fixed band filling. By contrast, in the models with electron and hole bands, superconductivity is optimized when the Fermi surface nesting is degraded to some extent, where finite-energy spin fluctuations around the nesting vector develop. The difference lies in the robustness of the nesting vector, namely, in models with electron and hole bands, the wave vector at which the spin susceptibility is maximized is fixed even when the nesting is degraded, whereas when the Fermi surface is large, the nesting vector varies with the deformation of the Fermi surface. We also discuss the possibility of realizing in actual materials the bilayer Hubbard model, which is a simple model with electron and hole bands, and is expected to have a very high T_c.
机译:我们在波动交换近似下,旋转波动介导的具有电子和孔带的旋转波动介导的超导性,并将它们与具有大型费米表面的方形格子上的模型进行比较。在大型费米表面模型中,更强的超导性以更好地嵌套用于固定带填充。相比之下,在具有电子和空穴带的模型中,当Fermi表面嵌套在一定程度上降低时,优化超导性,其中有限能量旋转波动围绕嵌套矢量发生。差异在于嵌套矢量的鲁棒性,即,在具有电子和孔条带的模型中,即使嵌套降低,即使嵌套降低,最大化旋转敏感性的波矢量也是固定的,而当费米表面大时,则嵌套载体随着费米表面的变形而变化。我们还讨论了在实际材料中实现的可能性,双层隆巴德型号,这是一种具有电子和孔条带的简单模型,预计将具有非常高的T_C。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第22期|214509.1-214509.6|共6页
  • 作者单位

    Department of Physics Osaka University 1-1 Machikaneyama Toyonaka Osaka 560-0043 Japan;

    Department of Physics Osaka University 1-1 Machikaneyama Toyonaka Osaka 560-0043 Japan;

    Department of Physics Osaka University 1-1 Machikaneyama Toyonaka Osaka 560-0043 Japan;

    Department of Physics Osaka University 1-1 Machikaneyama Toyonaka Osaka 560-0043 Japan;

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