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相对论自旋轨道耦合在Sr2IrO4中诱导产生的新型Jeff = 1/2莫特态。

Novel Jeff=1/2 Mott state induced by relativistic spin-orbit coupling in Sr2IrO4.

作者信息

Kim B J, Jin Hosub, Moon S J, Kim J-Y, Park B-G, Leem C S, Yu Jaejun, Noh T W, Kim C, Oh S-J, Park J-H, Durairaj V, Cao G, Rotenberg E

机构信息

School of Physics and Astronomy, Seoul National University, Seoul 151-747, Korea.

出版信息

Phys Rev Lett. 2008 Aug 15;101(7):076402. doi: 10.1103/PhysRevLett.101.076402.

Abstract

We investigated the electronic structure of 5d transition-metal oxide Sr2IrO4 using angle-resolved photoemission, optical conductivity, x-ray absorption measurements, and first-principles band calculations. The system was found to be well described by novel effective total angular momentum Jeff states, in which the relativistic spin-orbit coupling is fully taken into account under a large crystal field. Despite delocalized Ir 5d states, the Jeff states form such narrow bands that even a small correlation energy leads to the Jeff=1/2 Mott ground state with unique electronic and magnetic behaviors, suggesting a new class of Jeff quantum spin driven correlated-electron phenomena.

摘要

我们使用角分辨光电子能谱、光导率、X射线吸收测量以及第一性原理能带计算,研究了5d过渡金属氧化物Sr2IrO4的电子结构。发现该体系可以用新颖的有效总角动量Jeff态很好地描述,其中相对论自旋轨道耦合在大晶体场下得到了充分考虑。尽管Ir 5d态是离域的,但Jeff态形成了如此窄的能带,以至于即使是很小的关联能也会导致具有独特电子和磁行为的Jeff = 1/2莫特基态,这表明了一类新的由Jeff量子自旋驱动的关联电子现象。

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