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从人工钙钛矿铱酸盐超晶格中的层间交换耦合解析二维J<sub>eff</sub>=1/2反铁磁绝缘体

Two-Dimensional J_{eff}=1/2 Antiferromagnetic Insulator Unraveled from Interlayer Exchange Coupling in Artificial Perovskite Iridate Superlattices.

作者信息

Hao Lin, Meyers D, Frederick Clayton, Fabbris Gilberto, Yang Junyi, Traynor Nathan, Horak Lukas, Kriegner Dominik, Choi Yongseong, Kim Jong-Woo, Haskel Daniel, Ryan Phil J, Dean M P M, Liu Jian

机构信息

Department of Physics and Astronomy, University of Tennessee, Knoxville, Tennessee 37996, USA.

Department of Condensed Matter Physics and Materials Science, Brookhaven National Laboratory, Upton, New York 11973, USA.

出版信息

Phys Rev Lett. 2017 Jul 14;119(2):027204. doi: 10.1103/PhysRevLett.119.027204.

Abstract

We report an experimental investigation of the two-dimensional J_{eff}=1/2 antiferromagnetic Mott insulator by varying the interlayer exchange coupling in [(SrIrO_{3}){1}, (SrTiO{3}){m}] (m=1, 2 and 3) superlattices. Although all samples exhibited an insulating ground state with long-range magnetic order, temperature-dependent resistivity measurements showed a stronger insulating behavior in the m=2 and m=3 samples than the m=1 sample which displayed a clear kink at the magnetic transition. This difference indicates that the blocking effect of the excessive SrTiO{3} layer enhances the effective electron-electron correlation and strengthens the Mott phase. The significant reduction of the Néel temperature from 150 K for m=1 to 40 K for m=2 demonstrates that the long-range order stability in the former is boosted by a substantial interlayer exchange coupling. Resonant x-ray magnetic scattering revealed that the interlayer exchange coupling has a switchable sign, depending on the SrTiO_{3} layer number m, for maintaining canting-induced weak ferromagnetism. The nearly unaltered transition temperature between the m=2 and the m=3 demonstrated that we have realized a two-dimensional antiferromagnet at finite temperatures with diminishing interlayer exchange coupling.

摘要

我们报告了一项通过改变[(SrIrO₃)₁, (SrTiO₃)ₘ](m = 1、2和3)超晶格中的层间交换耦合对二维Jₑբբ = 1/2反铁磁莫特绝缘体进行的实验研究。尽管所有样品都表现出具有长程磁序的绝缘基态,但与在磁转变处出现明显扭折的m = 1样品相比,与温度相关的电阻率测量表明,m = 2和m = 3样品具有更强的绝缘行为。这种差异表明,过量的SrTiO₃层的阻挡效应增强了有效的电子 - 电子相关性并强化了莫特相。奈尔温度从m = 1时的150 K显著降低到m = 2时的40 K,这表明前者中的长程有序稳定性因大量的层间交换耦合而增强。共振X射线磁散射表明,层间交换耦合具有可切换的符号,这取决于SrTiO₃层数m,以维持倾斜诱导的弱铁磁性。m = 2和m = 3之间几乎未改变的转变温度表明,我们已经在有限温度下实现了具有减小的层间交换耦合的二维反铁磁体。

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