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Orbital selectivity versus Pomeranchuk instability in the iron-chalcogenide superconductors: A two-loop renormalization group study

机译:轨道选择性与氯丙酮超导体中的Pomeranchuk不稳定性:双环重整组研究

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We perform a two-loop renormalization group (RG) analysis of a 2D effective multiband model, which is relevant for describing the low-energy properties of some iron-chalcogenide superconducting materials. Crucial ingredients in this analysis are the calculation of higher-order contributions in the RG scheme that go beyond the widely-used parquet approximation and the consequent inclusion of nontrivial self-energy effects of the model that yield an anisotropic renormalization of the quasiparticle weight in the system. The motivation of our work is the experimental discovery by Sprau et al. (2017) that orbitally-selective renormalization of the quasiparticle weight in the Hund's metal phase at moderate temperatures underpins the highly unusual gap in the superconducting phase of the FeSe compound at lower temperatures. One prediction we arrive here is that the underlying origin of nematicity in these systems may indeed come from orbital-selectivity, instead of a Pomeranchuk instability in the d(+/-) channel. This orbital selectivity is driven by the presence of stripe-type antiferromagnetic fluctuations in the model. Therefore, we argue that the present RG results may provide a scenario from a weak-to-moderate coupling perspective, in which the role of orbital selectivity to describe the physical properties of some iron-chalcogenide superconductors is emphasized. (C) 2019 Elsevier Inc. All rights reserved.
机译:我们执行2D有效多频带模型的双环重整组(RG)分析,其型号用于描述一些铁硫属化物超导材料的低能量特性。该分析中的关键成分是在RG方案中计算高阶贡献,其超出广泛使用的地形近似值以及随后的模型的非竞争自能效应产生了Quasipliclicle重量的各向异性重整化的含义系统。我们工作的动机是Sprau等人的实验发现。 (2017)在中等温度下,在Hund的金属相中,在Hund的金属相中的Quasiplicle重量对Quasiplicle重量的靶向重量化是在较低温度下的酵母化合物的超导相中的高度异常间隙。我们到达的一个预测是这些系统中的向外目的起源可能确实来自轨道选择性,而不是D(+/-)信道中的Pomeranchuk不稳定性。该轨道选择性是通过模型中的条纹型反铁磁波动的存在驱动的。因此,我们认为目前的RG结果可以提供一种从弱到中等偶联的偶极偶联视角的场景,其中强调了轨道选择性来描述一些铁硫属化物超导体的物理性质的作用。 (c)2019 Elsevier Inc.保留所有权利。

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