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反铁磁态下的自旋轨道莫特绝缘体 Sr2IrO4 中 J(eff)=1/2 同位旋的二维海森堡行为。

Two-dimensional Heisenberg behavior of J(eff)=1/2 isospins in the paramagnetic state of the spin-orbital Mott insulator Sr2IrO4.

机构信息

RIKEN Advanced Science Institute, Wako 351-0198, Japan.

出版信息

Phys Rev Lett. 2012 Jun 15;108(24):247212. doi: 10.1103/PhysRevLett.108.247212.

Abstract

The dynamical correlations of J(eff)=1/2 isospins in the paramagnetic state of spin-orbital Mott insulator Sr2IrO4 were revealed by resonant magnetic x-ray diffuse scattering. We found a two-dimensional antiferromagnetic fluctuation with a large in-plane correlation length exceeding 100 lattice spacings at even 20 K above the magnetic ordering temperature. In marked contrast to the naive expectation of the strong magnetic anisotropy associated with an enhanced spin-orbit coupling, we discovered an isotropic isospin correlation that is well described by the two-dimensional S=1/2 quantum Heisenberg model. The estimated antiferromagnetic coupling constant as large as J∼0.1  eV that is comparable to the small Mott gap (<0.5  eV) points out the weak and marginal Mott character of this spin-orbital entangled system.

摘要

通过共振磁 X 射线漫散射,揭示了顺磁态轨道-自旋莫特绝缘体 Sr2IrO4 中 J(eff)=1/2 同位旋的动力学关联。我们发现了一种二维反铁磁涨落,即使在磁有序温度以上 20 K,其面内相关长度也超过 100 个晶格间距。与增强的自旋-轨道耦合相关的强磁各向异性的简单预期形成鲜明对比,我们发现了一种各向同性的同位旋关联,它可以很好地用二维 S=1/2 量子海森堡模型来描述。估计的反铁磁耦合常数高达 J∼0.1  eV,与小莫特能隙(<0.5  eV)相当,这表明这个轨道-自旋纠缠系统具有较弱和边缘的莫特特征。

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