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Giant effect of spin-lattice coupling on the thermal transport in two-dimensional ferromagnetic CrI3

机译:旋转晶格耦合对二维铁磁性CRI3热传输的巨大影响

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摘要

High performance thermal management is of great significance to the data security and working stability of magnetic devices with broad applications from sensing to data storage and spintronics, where there would exist coupling between the spin and phonon (lattice vibrations). However, the knowledge of the spin effect on thermal transport is lacking. Here, we report that the thermal conductivity of monolayer CrI3 is more than two orders of magnitude enhanced by the spin-lattice coupling. Fundamental understanding is achieved by analyzing the coupling among electronic, magnetic and phononic properties based on the orbital projected electronic structure and spin density. The bond angles and atomic positions are substantially changed due to the spin-lattice coupling, making the structure more stiff and more symmetric, and lead to the weaker phonon anharmonicity, and thus the enhanced thermal conductivity. This study uncovers the giant effect of spin-lattice coupling on the thermal transport, which would deepen our understanding on thermal transport and shed light on future research of thermal transport in magnetic materials.
机译:高性能热管理对于具有广泛应用的磁性设备的数据安全性和工作稳定性具有重要意义,从传感到数据存储和闪光灯,在旋转和声子(晶格振动)之间存在耦合。然而,缺乏对热传输的旋转效果的认识。在这里,我们报告说单层CRI3的导热率通过旋转晶格耦合增强了两个以上的数量级。基于轨道投射电子结构和旋转密度,通过分析电子,磁性和张素特性的耦合来实现基本理解。由于旋转晶格耦合,粘合角和原子位置基本上变化,使得结构更加难以越来越令人对称,并导致声子谐波较弱,从而提高导热率。本研究揭示了旋转晶格耦合对热运输的巨大效果,这将深化我们对磁性材料热传输的未来研究的热传输和棚光的理解。

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