华体会官方网页版-华体会(中国)

官方微信
友情链接

华体会官方网页版-华体会(中国):Giant Magneto-Optical Effect in van der Waals Room-Temperature Ferromagnet Fe3GaTe2

2024-09-12


Zhang, Xiaomin; Wang, Jian; Zhu, Wenkai; Zhang, Jiaqian; Li, Weihao; Zhang, Jing; Wang, Kaiyou Source: Chinese Physics Letters, v 41, n 6, June 1, 2024; ISSN: 0256307X, E-ISSN: 17413540; DOI: 10.1088/0256-307X/41/6/067503; Article number: 067503; Publisher: Institute of Physics

Author affiliation:

State Key Laboratory of Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing; 100083, China

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing; 100049, China

School of Materials, Shenzhen Campus of Sun Yat-sen University, Shenzhen; 518107, China

Abstract:

The discovery of ferromagnetic two-dimensional (2D) van der Waals (vdWs) materials provides an opportunity to explore intriguing physics and to develop innovative spin electronic devices. However, the main challenge for practical applications of vdWs ferromagnetic crystals lies in the weak intrinsic ferromagnetism and small perpendicular magnetic anisotropy (PMA) above room temperature. Here, we report the intrinsic vdWs ferromagnetic crystal Fe3GaTe2, synthesized by the self-flux method, exhibiting a Curie temperature (TC) of 370 K, a high saturation magnetization of 33.47 emu/g, and a large PMA energy density of approximately 4.17 × 10 J/m. Furthermore, the magneto-optical effect is systematically investigated in Fe3GaTe2. The doubly degenerate E2g (Γ) mode reverses the helicity of incident photons, indicating the existence of pseudoangular-momentum (PAM) and chirality. Meanwhile, the non-degenerate non-chiral A1g(Γ) phonon exhibits a significant magneto-Raman effect under an external out-of-plane magnetic field. These results lay the groundwork for studying phonon chirality and magneto-optical phenomena in 2D magnetic materials, providing the feasibility for further fundamental research and applications in spintronic devices.




关于我们
下载视频观看
联系方式
通信地址

北京市海淀区清华东路甲35号(林大北路中段) 北京912信箱 (100083)

电话

010-82304210/010-82305052(传真)

E-mail

semi@semi.ac.cn

交通地图
友情链接
中华人民共和国科学技术部
中国科华体会官方网页版-华体会(中国)
中国工程院
国家自然科学基金委员会
中国科华体会官方网页版-华体会(中国)大学
中国科学技术大学
中国科华体会官方网页版-华体会(中国)科技产业网
版权所有 华体会官方网页版-华体会(中国)

备案号:京ICP备05085259-1号 京公网安备110402500052 中国科华体会官方网页版-华体会(中国)半导体所声明

华体会官方网页版-华体会(中国):

华体会官方网页版-华体会(中国)