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論文

Change of superconducting character in UTe$$_{2}$$ induced by magnetic field

金城 克樹*; 藤林 裕己*; 北川 俊作*; 石田 憲二*; 徳永 陽; 酒井 宏典; 神戸 振作; 仲村 愛*; 清水 悠晴*; 本間 佳哉*; et al.

Physical Review B, 107(6), p.L060502_1 - L060502_5, 2023/02

 被引用回数:7 パーセンタイル:93.16(Materials Science, Multidisciplinary)

UTe$$_2$$ is a recently discovered spin-triplet superconductor. One of the characteristic features of UTe$$_2$$ is a magnetic field ($$H$$)-boosted superconductivity above 16 T when H is applied exactly parallel to the $$b$$ axis. To date, this superconducting (SC) state has not been thoroughly investigated, and the SC properties as well as the spin state of this high-$$H$$ SC (HHSC) phase are not well understood. In this letter, we performed AC magnetic susceptibility and nuclear magnetic resonance measurements and found that, up to 24.8 T, the HHSC state has bulk nature and is quite sensitive to the $$H$$ angle and that its SC character is different from that in the low-$$H$$ SC (LHSC) state. The dominant spin component of the spin-triplet pair is along the $$a$$ axis in the LHSC state but is changed in the HHSC state along the $$b$$ axis. Our results indicate that $$H$$-induced multiple SC states originate from the remaining spin degrees of freedom.

論文

Synthesis, structural transformation, thermal stability, valence state, and magnetic and electronic properties of PbNiO$$_{3}$$ with perovskite- and LiNbO$$_{3}$$-type structures

稲熊 宜之*; 田中 樹恵*; 土谷 武史*; 森 大輔*; 勝又 哲裕*; 大場 友則*; 開 康一*; 高橋 利宏*; 齋藤 寛之

Journal of the American Chemical Society, 133(42), p.16920 - 16929, 2011/09

 被引用回数:84 パーセンタイル:85.78(Chemistry, Multidisciplinary)

We synthesized two high-pressure polymorphs PbNiO$$_{3}$$ with different structures, a perovskite-type and a LiNbO$$_{3}$$-type structure, and investigated their formation behavior, detailed structure, structural transformation, thermal stability, valence state of cations, and magnetic and electronic properties. A perovskite-type PbNiO$$_{3}$$ synthesized at 800$$^{circ}$$C under a pressure of 3 GPa crystallizes as an orthorhombic GdFeO$$_{3}$$-type structure with a space group Pnma. The reaction under high pressure was monitored by an in situ energy dispersive X-ray diffraction experiment, which revealed that a perovskit-type phase was formed even at 400$$^{circ}$$C under 3 GPa.

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