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池内 和彦*; 中島 健次; 河村 聖子; 梶本 亮一; 脇本 秀一; 鈴木 謙介*; 藤田 全基*
AIP Advances (Internet), 8(10), p.101318_1 - 101318_5, 2018/10
被引用回数:0 パーセンタイル:0(Nanoscience & Nanotechnology)中性子散乱実験により、Al不純物を導入した実効ホール濃度0.25の銅酸化物超伝導体、LaSrCuAlOの巨大単結晶について、磁気励起を測定した。
浅野 駿*; 石井 賢司*; 松村 大樹; 辻 卓也; 伊奈 稔哲*; 鈴木 謙介*; 藤田 全基*
Journal of the Physical Society of Japan, 87(9), p.094710_1 - 094710_5, 2018/09
被引用回数:12 パーセンタイル:64.96(Physics, Multidisciplinary)We investigated the Ce substitution and reduction annealing effects on the electronic states at copper sites by Cu -edge X-ray absorption near-edge structure measurements in PrCeCuO (PCCO) with varying and (amount of oxygen loss during annealing). Absorption near-edge spectra were modified by Ce substitution and reduction annealing similarly with increasing and . Considering electron doping by Ce substitution, this similarity indicates an increase in electron number at the copper sites due to annealing (). Furthermore, quantitative analyses of the spectra clarified that the number of Cu sites, corresponding to the induced electron number by Ce substitution increases linearly with in the as-sintered PCCO, whereas is not exactly equal to 2. For each -fixed sample, tends to exceed 2 with increasing , suggesting the emergence of two types of carrier due to annealing.
浅野 駿*; 鈴木 謙介*; 松村 大樹; 石井 賢司*; 伊奈 稔哲*; 藤田 全基*
Journal of Physics; Conference Series, 969, p.012051_1 - 012051_5, 2018/04
被引用回数:3 パーセンタイル:82.15(Physics, Applied)Reduction and oxidation annealing effects on the electronic states around the copper sites for PrCeCuO and NdCeCuO with = 0 and = 0.15 were investigated by Cu -edge X-ray absorption measurements. Cu near-edge spectra were changed by the reduction annealing in a manner similar to the case of Ce substitution for both = 0 and = 0.15. This means an increase of electron density at the copper sites, indicating the aspect of electron doping in the reduction annealing. This reduction annealing effect on the near-edge spectra are reverted by the additional oxidation annealing. The amount of electron density around the copper sites is varied by the reduction and oxidation annealing, reversibly, corresponding to the reversible variation of the physical property from insulating to superconductivity.