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铁硒中二向色性序增强的轨道选择性。

Orbital Selectivity Enhanced by Nematic Order in FeSe.

机构信息

Department of Physics and Beijing Key Laboratory of Opto-electronic Functional Materials and Micro-nano Devices, Renmin University of China, Beijing 100872, China.

Theoretical Division and Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Phys Rev Lett. 2018 Nov 30;121(22):227003. doi: 10.1103/PhysRevLett.121.227003.

Abstract

Motivated by the recent low-temperature experiments on bulk FeSe, we study the electron correlation effects in a multiorbital model for this compound in the nematic phase using the U(1) slave-spin theory. We find that a finite nematic order helps to stabilize an orbital selective Mott phase. Moreover, we propose that when the d- and s-wave bond nematic orders are combined with the ferro-orbital order, there exists a surprisingly large orbital selectivity between the xz and yz orbitals even though the associated band splitting is relatively small. Our results explain the seemingly unusual observation of strong orbital selectivity in the nematic phase of FeSe, uncover new clues on the nature of the nematic order, and set the stage to elucidate the interplay between superconductivity and nematicity in iron-based superconductors.

摘要

受近期对大块 FeSe 的低温实验的启发,我们使用 U(1) 次晶格自旋理论研究了该化合物向列相多轨道模型中的电子关联效应。我们发现,有限的向列序有助于稳定轨道选择性莫特相。此外,我们提出,当 d 波和 s 波键向列序与铁轨道序相结合时,即使相关能带分裂相对较小,xz 和 yz 轨道之间也存在惊人的大轨道选择性。我们的结果解释了 FeSe 向列相中似乎异常的强轨道选择性观察,揭示了向列序性质的新线索,并为阐明铁基超导体中超导性和向列性之间的相互作用奠定了基础。

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