首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Competing instabilities, orbital ordering, and splitting of band degeneracies from a parquet renormalization group analysis of a four-pocket model for iron-based superconductors: Application to FeSe
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Competing instabilities, orbital ordering, and splitting of band degeneracies from a parquet renormalization group analysis of a four-pocket model for iron-based superconductors: Application to FeSe

机译:铁基超导体四口袋模型的拼花重整化组分析中的竞争不稳定性,轨道有序性和带简并性的分裂:在FeSe中的应用

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We report the results of a parquet renormalization group (RG) study of competing instabilities in the full 2D four-pocket, three-orbital low-energy model for iron-based superconductors. We derive and analyze the RG flow of the couplings, which describes all symmetry-allowed interactions between low-energy fermions. Despite that the number of the couplings is large, we argue that there are only two stable fixed trajectories of the RG flow and one weakly unstable fixed trajectory with a single unstable direction. Each fixed trajectory has a finite basin of attraction in the space of initial system parameters. On the stable trajectories, either interactions involving only d_(xz) and d_(yz) or only d_(xy) orbital components on electron pockets dominate, while on the weakly unstable trajectory interactions involving d_(xz) (d_(yz)) and d_(xy) orbital states on electron pockets remain comparable. The behavior along the two stable fixed trajectories has been analyzed earlier [Chubukov, Khodas, and Fernandes, Phys. Rev. X 6, 041045 (2016)]. Here we focus on the system behavior along the weakly unstable trajectory and apply the results to FeSe. We find, based on the analysis of susceptibilities along this trajectory, that the leading instability upon lowering the temperature is towards a three-component d-wave orbital nematic order. Two components are the differences between fermionic densities on d_(xz) and d_(yz) orbitals on hole pockets and on electron pockets, and the third one is the difference between the densities of d_(xy) orbitals on the two electron pockets. We argue that this order is consistent with the splitting of band degeneracies, observed in recent photoemission data on FeSe by Fedorov et al [Sci. Rep. 6, 36B34 (2016)].
机译:我们报告了铁基超导体的完整2D四腔,三轨道低能模型中竞争不稳定性的拼花重整化组(RG)研究的结果。我们推导并分析了耦合的RG流,它描述了低能费米子之间所有对称允许的相互作用。尽管耦合的数量很大,但我们认为RG流只有两个稳定的固定轨迹,而一个不稳定不稳定的固定轨迹只有一个不稳定的方向。每个固定轨迹在初始系统参数的空间中都有一个有限的吸引盆。在稳定的轨迹上,要么仅涉及d_(xz)和d_(yz)的相互作用,要么仅涉及d_(xy)轨道在电子袋上的相互作用,而在涉及d_(xz)(d_(yz))和电子袋上的d_(xy)轨道状态保持可比性。沿着两个稳定的固定轨迹的行为已在之前进行了分析[Chubukov,Khodas和Fernandes,Phys。 X 6,041045(2016)。在这里,我们专注于沿弱不稳定轨迹的系统行为,并将结果应用于FeSe。基于对这条轨迹的磁化率分析,我们发现降低温度时的前导不稳定性是朝着三分量d波轨道向列级的。两个分量是空穴腔和电子腔上d_(xz)和d_(yz)轨道上的铁离子密度之间的差异,第三个分量是两个电子腔上的d_(xy)轨道上的密度之间的差异。我们认为,这种顺序与谱带简并性的分裂是一致的,Fedorov等人在最近关于FeSe的光发射数据中观察到[Sci。 Rep。6,36B34(2016)]。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第8期|085108.1-085108.26|共26页
  • 作者单位

    School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota 55455, USA;

    Institut für Theoretische Physik, Universität Heidelberg, 69120 Heidelberg, Germany;

    Racah Institute of Physics, The Hebrew University, Jerusalem 91904, Israel;

    School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota 55455, USA;

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