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論文

Bipartite magnetic parent phases in the iron oxypnictide superconductor

平石 雅俊*; 飯村 壮史*; 小嶋 健児*; 山浦 淳一*; 平賀 晴弘*; 池田 一貴*; Miao, P.*; 石川 喜久*; 鳥居 周輝*; 宮崎 正範*; et al.

Nature Physics, 10(4), p.300 - 303, 2014/04

 被引用回数:103 パーセンタイル:95.39(Physics, Multidisciplinary)

High-temperature (high-$$T_{rm c}$$) superconductivity appears as a consequence of the carrier-doping of an undoped parent compound exhibiting antiferromagnetic order; thereby, ground-state properties of the parent compound are closely relevant to the superconducting state. On the basis of the concept, a spin-fluctuation has been addressed as an origin of pairing of the superconducting electrons in cuprates. Whereas, there is growing interest in the pairing mechanism such as an unconventional spin-fluctuation or an advanced orbital-fluctuation due to the characteristic multi-orbital system in iron-pnictides. Here, we report the discovery of an antiferromagnetic order as well as a unique structural transition in electron-overdoped LaFeAsO$$_{1-x}$$H$$_x$$ ($$x sim 0.5$$), whereby another parent phase was uncovered, albeit heavily doped. The unprecedented two-dome superconducting phases observed in this material can be interpreted as a consequence of the carrier-doping starting from the original at $$x sim 0$$ and advanced at $$x sim 0.5$$ parent phases toward the intermediate region. The bipartite parent phases with distinct physical properties in the second magnetic phase provide us with an interesting example to illustrate the intimate interplay among the magnetic interaction, structural change and orbital degree of freedom in iron-pnictides.

論文

J-PARC decay muon channel construction status

Strasser, P.*; 下村 浩一郎*; 幸田 章宏*; 河村 成肇*; 藤森 寛*; 牧村 俊助*; 小林 庸男*; 中原 一隆*; 加藤 峯夫*; 竹下 聡史*; et al.

Journal of Physics; Conference Series, 225, p.012050_1 - 012050_8, 2010/06

 被引用回数:12 パーセンタイル:95.19(Physics, Applied)

The new Muon Science Facility (MUSE) that is now under construction at J-PARC in the Materials and Life Sciences Facility (MLF) building will comprise four types of muon channels. In the first stage, a conventional superconducting decay muon channel (D-Line) was constructed, which can extract surface (positive) muons with an expected muon yield of $$10^7$$/s and decay positive/negative muon up to 120 MeV/c, with an expected muon yield of a few $$10^6$$/s at 60 MeV/c for both positive and negative muons. This channel will be used for various kinds of muon experiments like $$mu$$SR, muon catalyzed fusion and nondestruction elements analysis.

論文

Incommensurate spin correlations induced by magnetic Fe ions substituted into overdoped Bi$$_{1.75}$$Pb$$_{0.35}$$Sr$$_{1.90}$$CuO$$_{6+z}$$

平賀 晴弘*; 林 陽一郎*; 脇本 秀一; 武田 全康; 加倉井 和久; 足立 匡*; 小池 洋二*; 山田 幾也*; 宮崎 正範*; 平石 雅俊*; et al.

Physical Review B, 81(14), p.144501_1 - 144501_6, 2010/04

 被引用回数:15 パーセンタイル:54.92(Materials Science, Multidisciplinary)

Spin correlations in the overdoped region of Bi$$_{1.75}$$Pb$$_{0.35}$$Sr$$_{1.90}$$CuO$$_{6+z}$$ have been explored with Fe-doped single crystals characterized by neutron scattering, muon-spin-rotation spectroscopy, and magnetic-susceptibility measurements. The incommensurability $$delta$$ is unexpectedly large ($$sim$$0.2 r.l.u.), as compared with the overdoped La$$_{2-x}$$Sr$$_{x}$$CuO$$_{4}$$. However, this large $$delta$$ is close to the hole concentration $$p$$. While our findings in Fe-doped Bi$$_{1.75}$$Pb$$_{0.35}$$Sr$$_{1.90}$$CuO$$_{6+z}$$ support the commonality of incommensurate spin correlations in high-$$T_c$$ cuprate superconductors, they also suggest that the magnetic response might be dominated by a distinct mechanism in the overdoped region.

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