London Centre for Nanotechnology and Department of Physics and Astronomy,University College London, London WC1E 6BT, UK. Diamond Light Source Ltd, Diamond House, Harwell Science and Innovation Campus, Didcot, Oxfordshire OX11 0DE, UK.
J Phys Condens Matter. 2013 Oct 23;25(42):422202. doi: 10.1088/0953-8984/25/42/422202. Epub 2013 Sep 25.
Sr2IrO4 is a prototype of the class of Mott insulators in the strong spin-orbit interaction (SOI) limit described by a Jeff = 1/2 ground state. In Sr2IrO4, the strong SOI is predicted to manifest itself in the locking of the canting of the magnetic moments to the correlated rotation by 11.8(1)° of the oxygen octahedra that characterizes its distorted layered perovskite structure. Using x-ray resonant scattering at the Ir L3 edge we have measured accurately the intensities of Bragg peaks arising from different components of the magnetic structure. From a careful comparison of integrated intensities of peaks due to basal-plane antiferromagnetism, with those due to b-axis ferromagnetism, we deduce a canting of the magnetic moments of 12.2(8)°. We thus confirm that in Sr2IrO4 the magnetic moments rigidly follow the rotation of the oxygen octahedra, indicating that, even in the presence of significant non-cubic structural distortions, it is a close realization of the Jeff = 1/2 state.
Sr2IrO4 是强自旋轨道相互作用(SOI)极限下的莫特绝缘体的原型,其基态为 Jeff = 1/2。在 Sr2IrO4 中,强 SOI 预计会表现为磁矩的倾斜锁定到由其扭曲的层状钙钛矿结构特征的氧八面体的相关旋转,倾斜角度为 11.8(1)°。我们使用 Ir L3 边缘的 X 射线共振散射,精确地测量了源自不同磁结构分量的布拉格峰的强度。通过仔细比较源于基面反铁磁和源于 b 轴铁磁的峰的积分强度,我们推断出磁矩的倾斜为 12.2(8)°。因此,我们证实了在 Sr2IrO4 中,磁矩严格地跟随氧八面体的旋转,这表明,即使存在显著的非立方结构畸变,它也是 Jeff = 1/2 态的紧密实现。