Sivadas Nikhil, Okamoto Satoshi, Xu Xiaodong, Fennie Craig J, Xiao Di
School of Applied and Engineering Physics , Cornell University , Ithaca , New York 14853 , United States.
Materials Science and Technology Division , Oak Ridge National Laboratory , Oak Ridge , Tennessee 37831 , United States.
Nano Lett. 2018 Dec 12;18(12):7658-7664. doi: 10.1021/acs.nanolett.8b03321. Epub 2018 Nov 13.
We report the connection between the stacking order and magnetic properties of bilayer CrI 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 but also have direct implications in heterostructures made of two-dimensional magnets.
我们使用第一性原理计算报告了双层CrI的堆叠顺序与磁性能之间的联系。我们表明,堆叠顺序定义了磁基态。通过改变层间堆叠顺序,可以调节反铁磁和铁磁之间的层间交换相互作用。为了测量预测的与堆叠相关的磁性,我们建议使用线性磁电效应。我们的结果不仅为双层CrI中观察到的反铁磁性提供了一种可能的解释,而且对由二维磁体制成的异质结构有直接影响。