Magnetic proximity effect in the two-dimensional ε-Fe2O3/NbSe2 heterojunction
异质结
材料科学
凝聚态物理
光电子学
物理
作者
Bingyu 冰玉 Che 车,Guojing 国静 Hu 胡,Chao 超 Zhu 朱,Hui 辉 Guo 郭,Senhao 森浩 Lv 吕,Xuanye 轩冶 Liu 刘,Kang 康 Wu 吴,Zhen 振 Zhao 赵,Lulu 禄禄 Pan 潘,Ke 轲 Zhu 祝,Qi 琦 Qi 齐,Yechao 烨超 Han 韩,Xiao 晓 Lin 林,Zi’an 子安 Li 李,Chengmin 承民 Shen 申,Lihong 丽宏 Bao 鲍,Zheng 政 Liu 刘,Jiadong 家东 Zhou 周,Haitao 海涛 Yang 杨,Hong-Jun 鸿钧 Gao 高
出处
期刊:Chinese Physics B [IOP Publishing] 日期:2023-11-06卷期号:33 (2): 027502-027502
标识
DOI:10.1088/1674-1056/ad09d2
摘要
Two-dimensional (2D) magnet/superconductor heterostructures can promote the design of artificial materials for exploring 2D physics and device applications by exotic proximity effects. However, plagued by the low Curie temperature and instability in air, it is hard to realize practical applications for the reported layered magnetic materials at present. In this paper, we developed a space-confined chemical vapor deposition method to synthesize ultrathin air-stable ε -Fe 2 O 3 nanosheets with Curie temperature above 350 K. The ε -Fe 2 O 3 /NbSe 2 heterojunction was constructed to study the magnetic proximity effect on the superconductivity of the NbSe 2 multilayer. The electrical transport results show that the subtle proximity effect can modulate the interfacial spin–orbit interaction while undegrading the superconducting critical parameters. Our work paves the way to construct 2D heterojunctions with ultrathin nonlayered materials and layered van der Waals (vdW) materials for exploring new physical phenomena.