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首页> 外文期刊>Journal of the Physical Society of Japan >One-dimensionalization by Geometrical Frustration in the Anisotropic Triangular Lattice of the 5d Quantum Antiferromagnet Ca3ReO5Cl2
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One-dimensionalization by Geometrical Frustration in the Anisotropic Triangular Lattice of the 5d Quantum Antiferromagnet Ca3ReO5Cl2

机译:通过5D Quantum antiferromagnet Ca3Re05Cl2的各向异性三角形晶格中几何挫折的一维化。

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摘要

We report on the emergence of antiferromagnetic spin chains from two-dimensionally aligned spins on the anisotropic triangular lattice (ATL) in the insulating calcium rhenium oxychloride Ca3ReO5Cl2. The compound contains Re6+ ions, each with one unpaired electron in the d(xy) orbital, which are arranged to form a spin-1/2 ATL with J'/J similar to 0.32 and J = 41 K, where J and J' are magnetic interactions in and between the chains, respectively. In spite of the apparent two-dimensionality, we observe clear evidence of a gapless spin liquid that is characteristic of the spin-1/2 Heisenberg chain. This one-dimensionalization must be caused by geometrical frustration: growing antiferromagnetic correlations in every chain effectively cancel out interchain zigzag couplings at low temperatures. Ca3ReO5Cl2 provides us with a detailed insight into the interesting physics of the An antiferromagnet, especially via comparison with the typical ATL compound Cs2CuCl4.
机译:我们报告了在绝缘氧氯氧化钙Ca 3Re5Cl2中的双向三角形晶格(ATL)上的二维对齐旋转的反铁磁性旋转链的出现。 该化合物含有Re6 +离子,每次在D(XY)轨道中具有一个未配对的电子,其被布置成与J'/ J的旋转-1 / 2atl类似于0.32和J = 41 k,其中J和J' 链条之间的磁性相互作用分别在链之间。 尽管存在明显的二维性,但我们观察到明确的证据是旋转液体的无间隙旋转液体的特征。 这一维度必须是由几何挫折引起的:在低温下,每个链中的抗铁磁性相关性有效地抵消了间歇性之字形联轴器。 CA3RE5CL2向我们提供了对抗亚胺磁体的有趣物理学的详细洞察,特别是通过与典型的ATL化合物CS2CUCL4的比较。

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