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BaCuOsO体系中绝缘行为的磁结构与起源以及A位离子尺寸在其带隙打开中的作用:密度泛函理论方法

Magnetic Structure and Origin of Insulating Behavior in the BaCuOsO System, and the Role of A-Site Ionic Size in Its Bandgap Opening: Density Functional Theory Approaches.

作者信息

Park Taesu, Lee Wang Ro, Son Won-Joon, Shim Ji-Hoon, Lee Changhoon

机构信息

Department of Chemistry, Pohang University of Science and Technology, Pohang 37673, Korea.

Faculty of Liberal Education, Jeonbuk National University, Jeonju 54896, Korea.

出版信息

Nanomaterials (Basel). 2021 Dec 31;12(1):144. doi: 10.3390/nano12010144.

Abstract

The magnetic structure and the origin of band gap opening for BaCuOsO were investigated by exploring the spin exchange interactions and employing the spin-orbit coupling effect. It revealed that the double-perovskite BaCuOsO, composed of the 3d (Cu) and 5d (Os) transition metal magnetic ions is magnetic insulator. The magnetic susceptibilities of BaCuOsO obey the Curie-Weiss law, with an estimated Weiss temperature of -13.3 K, indicating AFM ordering. From the density functional theory approach, it is demonstrated that the spin exchange interaction between Cu ions plays a major role in exhibiting an antiferromagnetic behavior in the BaCuOsO system. An important factor to understand regarding the insulating behavior on BaCuOsO is the structural distortion shape of OsO octahedron, which should be closely connected with the ionic size of the A-site ion. Since the d-block of Os (d) ions of BaCuOsO is split into four states (xy < xz, yz < x-y < z), the crucial key is separation of doubly degenerated xz and yz levels to describe the magnetic insulating states of BaCuOsO. By orbital symmetry breaking, caused by the spin-orbit coupling, the t level of Os (d) ions is separated into three sublevels. Two electrons of Os (d) ions occupy two levels of the three spin-orbit-coupled levels. Since BaCuOsO is a strongly correlated system, and the Os atom belongs to the heavy element group, one speculates that it is necessary to take into account both electron correlation and the spin-orbit coupling effect in describing the magnetic insulating states of BaCuOsO.

摘要

通过探索自旋交换相互作用并利用自旋轨道耦合效应,对BaCuOsO的磁结构和带隙打开的起源进行了研究。结果表明,由3d(Cu)和5d(Os)过渡金属磁性离子组成的双钙钛矿BaCuOsO是一种磁绝缘体。BaCuOsO的磁化率服从居里 - 外斯定律,估计外斯温度为 -13.3 K,表明存在反铁磁有序。从密度泛函理论方法来看,证明了Cu离子之间的自旋交换相互作用在BaCuOsO体系中呈现反铁磁行为方面起主要作用。关于BaCuOsO绝缘行为需要理解的一个重要因素是OsO八面体的结构畸变形状,它应与A位离子的离子尺寸密切相关。由于BaCuOsO中Os(d)离子的d轨道分裂为四个态(xy < xz, yz < x - y < z),关键在于双重简并的xz和yz能级的分离以描述BaCuOsO的磁绝缘态。通过自旋轨道耦合引起的轨道对称性破缺,Os(d)离子的t能级分裂为三个子能级。Os(d)离子的两个电子占据三个自旋轨道耦合能级中的两个能级。由于BaCuOsO是一个强关联体系,且Os原子属于重元素组,有人推测在描述BaCuOsO的磁绝缘态时必须同时考虑电子关联和自旋轨道耦合效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbe8/8746825/a2bc18f09877/nanomaterials-12-00144-g001.jpg

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