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Signatures of a magnetic field-induced unconventional nematic liquid in the frustrated and anisotropic spin-chain cuprate LiCuSbO4

机译:磁场诱导的各向异性自旋链铜酸盐LiCuSbO4中非常规向列相液体的签名

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摘要

Modern theories of quantum magnetism predict exotic multipolar states in weakly interacting strongly frustrated spin-1/2 Heisenberg chains with ferromagnetic nearest neighbor (NN) inchain exchange in high magnetic fields. Experimentally these states remained elusive so far. Here we report strong indications of a magnetic field-induced nematic liquid arising above a field of ~13 T in the edge-sharing chain cuprate LiSbCuO4 ≡ LiCuSbO4. This interpretation is based on the observation of a field induced spin-gap in the measurements of the 7Li NMR spin relaxation rate T 1 −1 as well as a contrasting field-dependent power-law behavior of T 1 −1 vs. T and is further supported by static magnetization and ESR data. An underlying theoretical microscopic approach favoring a nematic scenario is based essentially on the NN XYZ exchange anisotropy within a model for frustrated spin-1/2 chains and is investigated by the DMRG technique. The employed exchange parameters are justified qualitatively by electronic structure calculations for LiCuSbO4.
机译:现代的量子磁性理论预测,在强磁场中,弱相互作用的,高度受挫的自旋1/2海森堡链与铁磁最近邻(NN)链交换中的奇异多极态。到目前为止,实验上这些状态仍然难以捉摸。在这里,我们报告了在边缘共享链状铜酸盐LiSbCuO4≡LiCuSbO4中,磁场感应向列液在〜13 T场以上产生的强烈迹象。这种解释是基于对 7 Li NMR自旋弛豫速率T 1 -1 的测量以及场场自旋间隙的观察, T 1 -1 相对于T的幂律特性,并由静态磁化强度和ESR数据进一步支持。有利于向列情况的基础理论微观方法基本上基于受挫的自旋1/2链模型中的NN XYZ交换各向异性,并通过DMRG技术进行了研究。通过对LiCuSbO4的电子结构计算定性地证明了所采用的交换参数是合理的。

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