Home > Publications database > Spin anisotropy due to spin-orbit coupling in optimally hole-doped Ba $_{0.67}$ K $_{0.33}$ Fe $_{2}$ As $_{2}$ > print |
001 | 827712 | ||
005 | 20230426083142.0 | ||
024 | 7 | _ | |a 10.1103/PhysRevB.94.214516 |2 doi |
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100 | 1 | _ | |a Song, Yu |0 P:(DE-HGF)0 |b 0 |e Corresponding author |
245 | _ | _ | |a Spin anisotropy due to spin-orbit coupling in optimally hole-doped Ba $_{0.67}$ K $_{0.33}$ Fe $_{2}$ As $_{2}$ |
260 | _ | _ | |a Woodbury, NY |c 2016 |b Inst. |
336 | 7 | _ | |a article |2 DRIVER |
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520 | _ | _ | |a We use polarized inelastic neutron scattering to study the temperature and energy dependence of spin space anisotropies in the optimally-hole-doped iron pnictide Ba0.67K0.33Fe2As2 (Tc=38 K). In the superconducting state, while the high-energy part of the magnetic spectrum is nearly isotropic, the low-energy part displays a pronounced anisotropy, manifested by a c-axis polarized resonance. We also observe that the spin anisotropy in superconducting Ba0.67K0.33Fe2As2 extends to higher energies compared with electron-doped BaFe2−xTMxAs2 (TM=Co, Ni) and isovalent-doped BaFe2As1.4P0.6, suggesting a connection between Tc and the energy scale of the spin anisotropy. In the normal state, the low-energy spin anisotropy for hole- and electron-doped iron pnictides near optimal superconductivity onset at temperatures similar to the temperatures at which the elastoresistance deviates from Curie–Weiss behavior, pointing to a possible connection between the two phenomena. Our results highlight the relevance of the spin-orbit coupling to the superconductivity of the iron pnictides. |
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700 | 1 | _ | |a Man, Haoran |0 P:(DE-HGF)0 |b 1 |
700 | 1 | _ | |a Zhang, Rui |0 P:(DE-HGF)0 |b 2 |
700 | 1 | _ | |a Lu, Xingye |0 P:(DE-HGF)0 |b 3 |
700 | 1 | _ | |a Zhang, Chenglin |0 P:(DE-HGF)0 |b 4 |
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700 | 1 | _ | |a Tan, Guotai |0 P:(DE-HGF)0 |b 6 |
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700 | 1 | _ | |a Fernandes, Rafael M. |0 P:(DE-HGF)0 |b 10 |
700 | 1 | _ | |a Dai, Pengcheng |0 P:(DE-HGF)0 |b 11 |e Corresponding author |
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