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铁基超导体五口袋模型中磁性、超导性和轨道序之间的相互作用:帕奎重整化群研究

Interplay between Magnetism, Superconductivity, and Orbital Order in 5-Pocket Model for Iron-Based Superconductors: Parquet Renormalization Group Study.

作者信息

Classen Laura, Xing Rui-Qi, Khodas Maxim, Chubukov Andrey V

机构信息

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

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

出版信息

Phys Rev Lett. 2017 Jan 20;118(3):037001. doi: 10.1103/PhysRevLett.118.037001.

Abstract

We report the results of the parquet renormalization group (RG) analysis of the phase diagram of the most general 5-pocket model for Fe-based superconductors. We use as an input the orbital structure of excitations near the five pockets made out of d_{xz}, d_{yz}, and d_{xy} orbitals and argue that there are 40 different interactions between low-energy fermions in the orbital basis. All interactions flow under the RG, as one progressively integrates out fermions with higher energies. We find that the low-energy behavior is amazingly simple, despite the large number of interactions. Namely, at low energies the full 5-pocket model effectively reduces either to a 3-pocket model made of one d_{xy} hole pocket and two electron pockets or a 4-pocket model made of two d_{xz}/d_{yz} hole pockets and two electron pockets. The leading instability in the effective 4-pocket model is a spontaneous orbital (nematic) order, followed by s^{+-} superconductivity. In the effective 3-pocket model, orbital fluctuations are weaker, and the system develops either s^{+-} superconductivity or a stripe spin-density wave. In the latter case, nematicity is induced by composite spin fluctuations.

摘要

我们报告了对铁基超导体最一般的五口袋模型相图进行的棋盘重整化群(RG)分析结果。我们将由d_{xz}、d_{yz}和d_{xy}轨道构成的五个口袋附近的激发轨道结构作为输入,并认为在轨道基下低能费米子之间存在40种不同的相互作用。随着逐步剔除能量更高的费米子,所有相互作用在重整化群下都会流动。我们发现,尽管相互作用数量众多,但低能行为却惊人地简单。具体而言,在低能情况下,完整的五口袋模型有效地简化为一个由一个d_{xy}空穴口袋和两个电子口袋组成的三口袋模型,或者一个由两个d_{xz}/d_{yz}空穴口袋和两个电子口袋组成的四口袋模型。有效四口袋模型中的主导不稳定性是自发轨道(向列)序,随后是s^{+-}超导性。在有效三口袋模型中,轨道涨落较弱,系统发展出s^{+-}超导性或条纹自旋密度波。在后一种情况下,向列性由复合自旋涨落诱导产生。

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