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Spin-liquid-like state in a spin-1/2 square-lattice antiferromagnet perovskite induced by d10–d0 cation mixing

机译:d10–d0阳离子混合诱导自旋1/2方形晶格反铁磁体钙钛矿中的自旋液体状态

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摘要

A quantum spin liquid state has long been predicted to arise in spin-1/2 Heisenberg square-lattice antiferromagnets at the boundary region between Néel (nearest-neighbor interaction dominates) and columnar (next-nearest-neighbor interaction dominates) antiferromagnetic order. However, there are no known compounds in this region. Here we use d10–d0 cation mixing to tune the magnetic interactions on the square lattice while simultaneously introducing disorder. We find spin-liquid-like behavior in the double perovskite Sr2Cu(Te0.5W0.5)O6, where the isostructural end phases Sr2CuTeO6 and Sr2CuWO6 are Néel and columnar type antiferromagnets, respectively. We show that magnetism in Sr2Cu(Te0.5W0.5)O6 is entirely dynamic down to 19 mK. Additionally, we observe at low temperatures for Sr2Cu(Te0.5W0.5)O6—similar to several spin liquid candidates—a plateau in muon spin relaxation rate and a strong T-linear dependence in specific heat. Our observations for Sr2Cu(Te0.5W0.5)O6 highlight the role of disorder in addition to magnetic frustration in spin liquid physics.
机译:长期以来,人们一直预测在自旋1/2海森堡方格反铁磁体中的Néel(近邻相互作用占主导)和柱状(近邻相邻相互作用占主导)反铁磁阶之间的自旋1/2 Heisenberg方格反铁磁体中会出现量子自旋态。但是,该区域没有已知的化合物。在这里,我们使用d 10 –d 0 阳离子混合来调整方格上的磁相互作用,同时引入无序。我们在双钙钛矿Sr2Cu(Te0.5W0.5)O6中发现了类似自旋液体的行为,其中同构末端相Sr2CuTeO6和Sr2CuWO6分别是Néel和柱状反铁磁体。我们表明,Sr2Cu(Te0.5W0.5)O6中的磁性在低至19 mK时是完全动态的。此外,我们在低温下观察到Sr2Cu(Te0.5W0.5)O6(类似于几种自旋液体候选物)的μon自旋弛豫率处于平稳状态,并且比热对T线性的依赖性强。我们对Sr 2 Cu(Te 0.5 W 0.5 )O 6 的观察不仅强调了疾病的作用自旋液体物理学中的磁阻。

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