Two-dimensional ferromagnetic superlattices

被引:43
作者
Liu, Shanshan [1 ,2 ,3 ]
Yang, Ke [1 ,2 ,4 ]
Liu, Wenqing [5 ]
Zhang, Enze [1 ,2 ,3 ]
Li, Zihan [1 ,2 ,3 ]
Zhang, Xiaoqian [6 ]
Liao, Zhiming [7 ]
Zhang, Wen [8 ]
Sun, Jiabao [5 ]
Yang, Yunkun [1 ,2 ,3 ]
Gao, Han [7 ]
Huang, Ce [1 ,2 ,3 ]
Ai, Linfeng [1 ,2 ,3 ]
Wong, Ping Kwan Johnny [9 ,10 ]
Wee, Andrew Thye Shen [8 ,9 ,10 ]
N'Diaye, Alpha T. [11 ]
Morton, Simon A. [11 ]
Kou, Xufeng [12 ]
Zou, Jin [7 ,13 ]
Xu, Yongbing [6 ]
Wu, Hue [1 ,2 ,4 ,14 ]
Xiu, Faxian [1 ,2 ,3 ,14 ]
机构
[1] Fudan Univ, State Key Lab Surface Phys, Shanghai 200433, Peoples R China
[2] Fudan Univ, Dept Phys, Shanghai 200433, Peoples R China
[3] Fudan Univ, Inst Nanoelect Devices & Quantum Comp, Shanghai 200433, Peoples R China
[4] Fudan Univ, Lab Computat Phys Sci, MOE, Shanghai 200433, Peoples R China
[5] Royal Holloway Univ London, Dept Elect Engn, Egham TW20 0EX, Surrey, England
[6] Nanjing Univ, Sch Elect Sci & Engn, Nanjing 210093, Peoples R China
[7] Univ Queensland, Mat Engn, Brisbane, Qld 4072, Australia
[8] Natl Univ Singapore, Dept Phys, Singapore 117542, Singapore
[9] Natl Univ Singapore, Ctr Adv 2D Mat, Singapore 117546, Singapore
[10] Natl Univ Singapore, Graphene Res Ctr, Singapore 117546, Singapore
[11] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA
[12] ShanghaiTech Univ, Sch Informat Sci & Technol, Shanghai 201210, Peoples R China
[13] Univ Queensland, Ctr Microscopy & Microanal, Brisbane, Qld 4072, Australia
[14] Collaborat Innovat Ctr Adv Microstruct, Nanjing 210093, Peoples R China
基金
中国国家自然科学基金; 英国工程与自然科学研究理事会; 中国博士后科学基金;
关键词
2D ferromagnetic material; room temperature; 2-inch Fe3GeTe2 film wafers; proximity effect; (Fe3GeTe2/CrSb)(n) superlattice; CRITICAL-BEHAVIOR; FINITE-SIZE; CRYSTAL; RANGE; PHASE;
D O I
10.1093/nsr/nwz205
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Mechanically exfoliated two-dimensional ferromagnetic materials (2D FMs) possess long-range ferromagnetic order and topologically nontrivial skyrmions in few layers. However, because of the dimensionality effect, such few-layer systems usually exhibit much lower Curie temperature (T-C) compared to their bulk counterparts. It is therefore of great interest to explore effective approaches to enhance their T-C, particularly in wafer-scale for practical applications. Here, we report an interfacial proximity-induced high-T-C 2D FM Fe3GeTe2 (FGT) via A-type antiferromagnetic material CrSb (CS) which strongly couples to FGT. A superlattice structure of (FGT/CS)(n), where n stands for the period of FGT/CS heterostructure, has been successfully produced with sharp interfaces by molecular-beam epitaxy on 2-inch wafers. By performing elemental specific X-ray magnetic circular dichroism (XMCD) measurements, we have unequivocally discovered that T-C of 4-layer Fe3GeTe2 can be significantly enhanced from 140 K to 230 K because of the interfacial ferromagnetic coupling. Meanwhile, an inverse proximity effect occurs in the FGT/CS interface, driving the interfacial antiferromagnetic CrSb into a ferrimagnetic state as evidenced by double-switching behavior in hysteresis loops and the XMCD spectra. Density functional theory calculations show that the Fe-Te/Cr-Sb interface is strongly FM coupled and doping of the spin-polarized electrons by the interfacial Cr layer gives rise to the T-C enhancement of the Fe3GeTe2 films, in accordance with our XMCD measurements. Strikingly, by introducing rich Fe in a 4-layer FGT/CS superlattice, T-C can be further enhanced to near room temperature. Our results provide a feasible approach for enhancing the magnetic order of few-layer 2D FMs in wafer-scale and render opportunities for realizing realistic ultra-thin spintronic devices.
引用
收藏
页码:745 / 754
页数:10
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