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A tale of two metals: contrasting criticalities in the pnictides and hole-doped cuprates

机译:两个金属的故事:对比突出的突出铜铜蛋白

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The iron-based high temperature superconductors share a number of similarities with their copper-based counterparts, such as reduced dimensionality, proximity to states of competing order, and a critical role for 3d electron orbitals. Their respective temperature-doping phase diagrams also contain certain commonalities that have led to claims that the metallic and superconducting (SC) properties of both families are governed by their proximity to a quantum critical point (QCP) located inside the SC dome. In this review, we critically examine these claims and highlight significant differences in the bulk physical properties of both systems. While there is now a large body of evidence supporting the presence of a (magnetic) QCP in the iron pnictides, the situation in the cuprates is much less apparent, at least for the end point of the pseudogap phase. We argue that the opening of the normal state pseudogap in cuprates, so often tied to a putative QCP, arises from a momentum-dependent breakdown of quasiparticle coherence that sets in at much higher doping levels but which is driven by the proximity to the Mott insulating state at half filling. Finally, we present a new scenario for the cuprates in which this loss of quasiparticle integrity and its evolution with momentum, temperature and doping plays a key role in shaping the resultant phase diagram.
机译:铁基高温超导体与基于铜的对应物共享许多相似性,例如减少维度,靠近竞争秩序的状态,以及3D电子轨道的关键作用。它们各自的温度掺杂相图还包含具有导致的某些公共性,其要求两个家庭的金属和超导(SC)性质通过它们的临界点(QCP)的邻近位于SC圆顶内部的邻近来控制。在本次审查中,我们批判性地检查这些索赔,并突出显示两个系统的批量物理性质的显着差异。虽然现在存在有大量证据,但是支持在铁突出的原铁癌中存在(磁性)QCP的情况下,铜酸盐衍生物的情况至少显而易见,至少对于伪焦点阶段的终点而言。我们认为,在铜替代替代品中的正常状态假阴影的打开通常与推定的QCP相关联,从Quasiplicle连贯性的动量依赖性分解中置于较高的掺杂水平,但是由覆盖物的近距离驱动州半馅。最后,我们为铜替代品展示了一种新的情景,其中这种Quasiplicle完整性的损失及其随动力,温度和掺杂的演化起到了形成所得相图的关键作用。

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