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Hole density dependent magnetic structure and anisotropy in Fe-pnictide superconductor

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【作者】 岳远放黄忠兵黎欢明星郑晓军

【Author】 Yuan-Fang Yue;Zhong-Bing Huang;Huan Li;Xing Ming;Xiao-Jun Zheng;College of Science, Guilin University of Technology;Key Laboratory of Low-dimensional Structural Physics and Application,Education Department of Guangxi Zhuang Autonomous Region;Faculty of Physics, Hubei University;

【通讯作者】 黄忠兵;郑晓军;

【机构】 College of Science, Guilin University of TechnologyKey Laboratory of Low-dimensional Structural Physics and Application,Education Department of Guangxi Zhuang Autonomous RegionFaculty of Physics, Hubei University

【摘要】 The competition between different magnetic structures in hole-doped Fe-pnicitides is explored based on an extended five-orbital Hubbard model including long-range Coulomb interactions. Our results show that the stabilized magnetic structure evolves with increasing hole doping level. Namely, the stripe antiferromagnetic phase dominates at zero doping,while magnetic structures with more antiferromagnetic linking numbers such as the staggered tetramer, staggered trimer,and staggered dimer phases become energetically favorable as the hole density increases. At a certain doping level, energy degeneracy of different magnetic structures appears, indicating strong magnetic frustration and magnetic fluctuations in the system. We suggest that the magnetic competition induced by the hole doping may explain the fast decrease of the Neel temperature TNand the moderately suppressed magnetic moment in the hole doped Fe-pnicitides. Moreover, our results show a sign reversal of the kinetic energy anisotropy as the magnetic ground state evolves, which may be the mechanism behind the puzzling sign reversal of the in-plane resistivity anisotropy in hole-doped Fe-pnicitides.

【Abstract】 The competition between different magnetic structures in hole-doped Fe-pnicitides is explored based on an extended five-orbital Hubbard model including long-range Coulomb interactions. Our results show that the stabilized magnetic structure evolves with increasing hole doping level. Namely, the stripe antiferromagnetic phase dominates at zero doping,while magnetic structures with more antiferromagnetic linking numbers such as the staggered tetramer, staggered trimer,and staggered dimer phases become energetically favorable as the hole density increases. At a certain doping level, energy degeneracy of different magnetic structures appears, indicating strong magnetic frustration and magnetic fluctuations in the system. We suggest that the magnetic competition induced by the hole doping may explain the fast decrease of the Neel temperature TNand the moderately suppressed magnetic moment in the hole doped Fe-pnicitides. Moreover, our results show a sign reversal of the kinetic energy anisotropy as the magnetic ground state evolves, which may be the mechanism behind the puzzling sign reversal of the in-plane resistivity anisotropy in hole-doped Fe-pnicitides.

【基金】 Project supported by the Guangxi Natural Science Foundation,China (Grant Nos. 2022GXNSFAA035560and GuikeAD20159009);the Scientific Research Foundation of Guilin University of Technology (Grant No. GLUTQD2017009)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年09期
  • 【分类号】O469
  • 【下载频次】2
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