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Switching of magnetic coupling by a structural symmetry change near the Mott transition in Ca2-xSrxRuO4

机译:通过在Ca2-xSrxRuO4中的Mott跃迁附近通过结构对称性变化进行磁耦合切换

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摘要

We studied the structural, magnetic, and transport properties of the quasi-two-dimensional Mott transition system Ca2-xSrxRuO4. In the vicinity of the metal-nonmetal (M-NM) transition at x similar or equal to 0.2, we found a structural transition accompanied by a structural symmetry change with the instability point at x(c)similar or equal to 0.5. The critical change across the structural transition in the temperature dependence of the susceptibility indicates a crossover of the metallic state, most likely from the nearly antiferromagnetic state next to the M-NM transition to the nearly ferromagnetic state around x(c). The latter evolves into the spin-triplet superconductor Sr2RuO4 (x=2) with enhanced paramagnetism. We argue that the competition between the structural instability and the ferromagnetism results in such a structural symmetry change with orbital degeneracy lifting, which induces the switching of magnetic coupling. In addition, a changeover from metallic to nonmetallic behavior was observed across the structural transition in the out-of-plane resistivity, which reveals highly anisotropic transport due to the quasi-two-dimensional electronic structure. [References: 31]
机译:我们研究了准二维Mott跃迁系统Ca2-xSrxRuO4的结构,磁性和输运性质。在x-相似或等于0.2的金属-非金属(M-NM)过渡附近,我们发现伴随x的不稳定性点x(c)相似或等于0.5的结构过渡伴随着结构对称性变化。磁化率对温度的依赖性跨过结构转变的临界变化表明金属态的交叉,最有可能从紧接着M-NM转变的近反铁磁态转变为x(c)附近的近铁磁态。后者演变成具有增强的顺磁性的自旋三重态超导体Sr2RuO4(x = 2)。我们认为,结构不稳定性和铁磁性之间的竞争会导致这种结构对称性随着轨道简并度提升而发生变化,从而引起磁耦合的转换。此外,在平面外电阻率的整个结构过渡过程中,观察到了从金属到非金属的转变,这归因于准二维电子结构,显示出高度各向异性的传输。 [参考:31]

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