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二维磁体CrI₃中可调谐的层状磁性辅助磁拉曼效应

Tunable layered-magnetism-assisted magneto-Raman effect in a two-dimensional magnet CrI.

作者信息

Jin Wencan, Ye Zhipeng, Luo Xiangpeng, Yang Bowen, Ye Gaihua, Yin Fangzhou, Kim Hyun Ho, Rojas Laura, Tian Shangjie, Fu Yang, Yan Shaohua, Lei Hechang, Sun Kai, Tsen Adam W, He Rui, Zhao Liuyan

机构信息

Department of Physics, University of Michigan, Ann Arbor, MI 48109.

Department of Electrical and Computer Engineering, Texas Tech University, Lubbock, TX 79409.

出版信息

Proc Natl Acad Sci U S A. 2020 Oct 6;117(40):24664-24669. doi: 10.1073/pnas.2012980117. Epub 2020 Sep 23.

Abstract

We used a combination of polarized Raman spectroscopy experiment and model magnetism-phonon coupling calculations to study the rich magneto-Raman effect in the two-dimensional (2D) magnet CrI We reveal a layered-magnetism-assisted phonon scattering mechanism below the magnetic onset temperature, whose Raman excitation breaks time-reversal symmetry, has an antisymmetric Raman tensor, and follows the magnetic phase transitions across critical magnetic fields, on top of the presence of the conventional phonon scattering with symmetric Raman tensors in -layer CrI We resolve in data and by calculations that the first-order phonon of the monolayer splits into an -fold multiplet in -layer CrI due to the interlayer coupling [Formula: see text] and that the phonons within the multiplet show distinct magnetic field dependence because of their different layered-magnetism-phonon coupling. We further find that such a layered-magnetism-phonon coupled Raman scattering mechanism extends beyond first-order to higher-order multiphonon scattering processes. Our results on the magneto-Raman effect of the first-order phonons in the multiplet and the higher-order multiphonons in -layer CrI demonstrate the rich and strong behavior of emergent magneto-optical effects in 2D magnets and underline the unique opportunities of spin-phonon physics in van der Waals layered magnets.

摘要

我们结合偏振拉曼光谱实验和磁性 - 声子耦合模型计算,研究二维磁体CrI中丰富的磁拉曼效应。我们揭示了在磁起始温度以下的层状磁性辅助声子散射机制,其拉曼激发打破了时间反演对称性,具有反对称拉曼张量,并随着临界磁场下的磁相变而变化,此外还存在具有对称拉曼张量的常规层内CrI声子散射。我们通过数据和计算解析出,由于层间耦合[公式:见原文],单层的一阶声子在多层CrI中分裂为一个n重多重态,并且多重态内的声子由于其不同的层状磁性 - 声子耦合而表现出不同的磁场依赖性。我们进一步发现,这种层状磁性 - 声子耦合拉曼散射机制不仅适用于一阶,还扩展到高阶多声子散射过程。我们关于多层CrI中多重态一阶声子和高阶多声子的磁拉曼效应的结果,展示了二维磁体中涌现的磁光效应丰富而强烈的行为,并突出了范德华层状磁体中自旋 - 声子物理的独特机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f75c/7547278/c54a752ba729/pnas.2012980117fig01.jpg

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