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Unconventional superconductivity and interaction induced Fermi surface reconstruction in the two-dimensional Edwards model

机译:二维Edwards模型中非常规超导电性和相互作用引起的费米表面重构

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摘要

We study the competition between unconventional superconducting pairing and charge density wave (CDW) formation for the two-dimensional Edwards Hamiltonian at half filling, a very general two-dimensional transport model in which fermionic charge carriers couple to a correlated background medium. Using the projective renormalization method we find that a strong renormalization of the original fermionic band causes a new hole-like Fermi surface to emerge near the center of the Brillouin zone, before it eventually gives rise to the formation of a charge density wave. On the new, disconnected parts of the Fermi surface superconductivity is induced with a sign-changing order parameter. We discuss these findings in the light of recent experiments on iron-based oxypnictide superconductors.
机译:我们研究了半填充时二维爱德华兹哈密顿量的非常规超导配对与电荷密度波(CDW)形成之间的竞争,这是一种非常普遍的二维传输模型,其中费米离子电荷载体耦合到相关的背景介质。使用射影重归一化方法,我们发现原始铁离子带的强重归一化会导致新的孔状费米表面在布里渊区的中心附近出现,最终导致电荷密度波的形成。在费米表面的新的断开部分,通过符号改变阶数参数来诱导超导。我们根据有关铁基氧化肽超导体的最新实验讨论这些发现。

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