凝聚态物理
激子
半导体
各向异性
扭转
材料科学
磁性半导体
范德瓦尔斯力
铁磁性
单层
物理
磁场
电介质
磁各向异性
旋转
自旋电子学
磁电阻
量子阱
磁性
Valleytronics公司
本征半导体
各向异性能量
作者
Qiuyang Li,Xiaohan Wan,Senlei Li,Adam Alfrey,Wenhao Liu,Zhaohui Zhai,Wyatt Alpers,Y.-N. Yang,Irmina Wladyszewska,Christiano W. Beach,Liuyan Zhao,Bing Lv,Chunhui Du,Kai Sun,Hui Deng
摘要
Two-dimensional (2D) van der Waals (vdW) magnetic semiconductors are a new class of quantum materials for studying the emergent physics of excitons and spins in the 2D limit. Twist engineering provides a powerful tool to manipulate the fundamental properties of 2D vdW materials. Here, we show that twist engineering of the anisotropic ferromagnetic monolayer semiconductor CrSBr leads to bilayer magnetic semiconductors with continuously tunable magnetic moment, dielectric anisotropy, exciton energy, and linear dichroism. We furthermore provide a model for exciton energy in the media with tunable anisotropy. These results advance fundamental studies of 2D vdW materials and open doors to applications to nano-optics, twistronics, and spintronics.
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