论文标题

Hund绝缘子CRI3的电子结构和磁性

Electronic structure and magnetism of the Hund insulator CrI3

论文作者

Yu, Tianye, Liu, Rui, Mao, Huican, Ma, Xiaobo, Wang, Guangwei, Yuan, Zhihong, Zheng, Pengyu, Peng, Yiran, Yin, Zhiping

论文摘要

CRI3是一种二维铁磁范德华材料,电荷间隙为1.1-1.2 eV。在这项研究中,使用密度功能理论和动力学均值场理论研究了CRI3的电子结构和磁性。当hund耦合JH = 0.7 eV中包括现场Hubbard u = 5 eV时,我们的计算在顺磁状态下成功地重现了1.1 eV的电荷差距。相比之下,较大的U值为8 eV且可忽略不计的JH JH,CRI3被预测为顺磁性状态下的中等相关金属。我们得出的结论是,由于CR 3D T2G轨道的半充满配置,CRI3是一种Mott-Hund绝缘子。 Cr 3D EG轨道被大约一个电子占据,这会导致强大的价波动,因此CR 3D轨道无法用一个状态描述。此外,在有限温度下,在R3相计算的有序有序的静态磁矩在铁磁状态下明显大于C2/m相。该观察结果表明,随着温度降低,从C2/M相向R3相的结构相变是由铁磁自旋波动驱动的。

CrI3 is a two-dimensional ferromagnetic van der Waals material with a charge gap of 1.1-1.2 eV. In this study, the electronic structure and magnetism of CrI3 are investigated by using density functional theory and dynamical mean-field theory. Our calculations successfully reproduce a charge gap of 1.1 eV in the paramagnetic state when a Hund coupling JH = 0.7 eV is included with an on-site Hubbard U = 5 eV. In contrast, with a large U value of 8 eV and negligible Hund coupling JH, CrI3 is predicted to be a moderately correlated metal in the paramagnetic state. We conclude that CrI3 is a Mott-Hund insulator due to the half-filled configuration of the Cr 3d t2g orbitals. The Cr 3d eg orbitals are occupied by approximately one electron, which leads to strong valence fluctuations so that the Cr 3d orbitals cannot be described by a single state. Moreover, at finite temperature, the calculated ordered static magnetic moment in the ferromagnetic state is significantly larger in the R3 phase than in the C2/m phase. This observation indicates that the structural phase transition from the C2/m phase to the R3 phase with decreasing temperature is driven by ferromagnetic spin fluctuations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源