Multiorbital Effects on Antiferromagnetism in Fe Pnictides
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概要
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We apply a Hartree–Fock approximation to a two-orbital model proposed for Fe pnictide superconductors. It is found that the antiferromagnetic (AFM) order with the ordering vector $\mathbf{Q}=(\pi,0)$ is realized. The AFM order appears simultaneously with ferro-orbital order, the latter leads to a secondary lattice distortion. We also investigate the influence of doping on the AFM order. The size of the AFM moment changes continuously for lightly doped cases, but when the amount of doped carriers exceeds a certain value the AFM state is suddenly destroyed. We also show that Fermi surfaces remain and change significantly on doping even in the AFM state. This behaviour is explained by considering the nesting due to the multi-sheet Fermi-surface structure and multiorbital nature of the electronic bands characteristic to Fe pnictides.
- Physical Society of Japanの論文
- 2009-08-15
著者
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Thalmeier Peter
Max Planck Institute for Chemical Physics of Solids, 01187 Dresden, Germany
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Kubo Katsunori
Max Planck Institute for Chemical Physics of Solids, 01187 Dresden, Germany
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- Multiorbital Effects on Antiferromagnetism in Fe Pnictides