Stacking-Dependent Magnetism in Bilayer CrI<sub>3</sub>

Зависимый от порядка укладки магнетизм в двухслойном CrI3
Xiaodong Xu, Di Xiao, Satoshi Okamoto, Craig J. Fennie, Nikhil Sivadas
2018-11-08

bilayer CrI3first-principles calculationsinterlayer exchange interactionlinear magnetoelectric effectstacking-dependent magnetism
We report the connection between the stacking order and magnetic properties of bilayer CrI 3 using first-principles calculations. We show that the stacking order defines the magnetic ground state. By changing the interlayer stacking order, one can tune the interlayer exchange interaction between antiferromagnetic and ferromagnetic. To measure the predicted stacking-dependent magnetism, we propose using linear magnetoelectric effect. Our results not only gives a possible explanation for the observed antiferromagnetism in bilayer CrI 3 but also have direct implications in heterostructures made of two-dimensional magnets.
1
Changing the stacking order tunes the interlayer exchange interaction between antiferromagnetic and ferromagnetic coupling.
2
First-principles calculations show that interlayer stacking order determines the magnetic ground state of bilayer CrI3.
3
Stacking-dependent magnetism may explain the experimentally observed antiferromagnetism in bilayer CrI3.
4
The findings have direct implications for heterostructures composed of two-dimensional magnets.
5
The linear magnetoelectric effect is proposed as an experimental probe of stacking-dependent magnetism in bilayer CrI3.

Bilayer CrI3 with different interlayer stacking orders

Stacking-dependent magnetic ground state and tunable interlayer exchange interaction between antiferromagnetic and ferromagnetic states

Publication Details
Publication Date
2018-11-08
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Xiaodong Xu
Di Xiao
Satoshi Okamoto
Craig J. Fennie
Nikhil Sivadas
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%