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Sr2IrO4中自旋轨道莫特态的相敏观测。

Phase-sensitive observation of a spin-orbital Mott state in Sr2IrO4.

作者信息

Kim B J, Ohsumi H, Komesu T, Sakai S, Morita T, Takagi H, Arima T

机构信息

Department of Advanced Materials, University of Tokyo, Kashiwa 277-8561, Japan.

出版信息

Science. 2009 Mar 6;323(5919):1329-32. doi: 10.1126/science.1167106.

Abstract

Measurement of the quantum-mechanical phase in quantum matter provides the most direct manifestation of the underlying abstract physics. We used resonant x-ray scattering to probe the relative phases of constituent atomic orbitals in an electronic wave function, which uncovers the unconventional Mott insulating state induced by relativistic spin-orbit coupling in the layered 5d transition metal oxide Sr2IrO4. A selection rule based on intra-atomic interference effects establishes a complex spin-orbital state represented by an effective total angular momentum = 1/2 quantum number, the phase of which can lead to a quantum topological state of matter.

摘要

对量子物质中的量子力学相位进行测量,可最直接地体现潜在的抽象物理现象。我们利用共振X射线散射来探测电子波函数中组成原子轨道的相对相位,从而揭示了层状5d过渡金属氧化物Sr2IrO4中由相对论自旋轨道耦合诱导的非常规莫特绝缘态。基于原子内干涉效应的选择定则确立了一种由有效总角动量 = 1/2量子数表示的复杂自旋轨道态,其相位可导致物质的量子拓扑态。

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