论文标题

一个电子计数规则,用于确定范德华材料的层间磁耦合

An electron-counting rule to determine the interlayer magnetic coupling of the van der Waals materials

论文作者

Xiao, Jiewen, Yan, Binghai

论文摘要

在分层的磁性材料中,相邻的范德华层之间的磁耦合要具有挑战性地理解和预期,尽管层内的交换相互作用可以很好地理解合理化,例如通过superexchange机制。在这项工作中,我们阐明了层间交换机制,并提出了一项电子计数规则,以确定范德华层之间的层间磁序,以计算$ d $ - 轨道职业($ d^n $,其中$ n $是磁心上的$ d $ -Electrons的数量)。使用此规则,我们将磁性单层分为两组,即I型($ n <5 $)和II型($ n \ geq5 $),并为绝缘子和金属提供了三种类型的层间磁耦合。两个类型II层之间的耦合更喜欢抗铁磁(AFM)阶,而I型和II型接口则有利于铁电磁(FM)方式。但是,对于两种I层,它们显示了FM和AFM订单之间的竞争,甚至导致堆叠依赖性磁性。此外,通过自由载体跳跃的较小校正,也可以将金属层纳入该规则中。因此,该规则提供了简单的指导,以了解带有所需磁性秩的层间交换和进一步的设计范德华连接。

In layered magnetic materials, the magnetic coupling between neighboring van der Waals layers is challenging to understand and anticipate, although the exchange interaction inside a layer can be well rationalized for example by the superexchange mechanism. In this work, we elucidate the interlayer exchange mechanism and propose an electron-counting rule to determine the interlayer magnetic order between van der Waals layers, based on counting the $d$-orbital occupation ($d^n$, where $n$ is the number of $d$-electrons at the magnetic cation). With this rule, we classify magnetic monolayers into two groups, type-I ($n<5$) and type-II ($n\geq5$), and derive three types of interlayer magnetic coupling for both insulators and metals. The coupling between two type-II layers prefers the antiferromagnetic (AFM) order, while type-I and type-II interfaces favor the ferromagnetic (FM) way. However, for two type-I layers, they display competition between FM and AFM orders and even lead to the stacking dependent magnetism. Additionally, metallic layers can also be incorporated into this rule with a minor correction from the free carrier hopping. Therefore, this rule provides simple guidance to understand the interlayer exchange and further design van der Waals junctions with desired magnetic orders.

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