Observation of Colossal Topological Hall Effect in Noncoplanar Ferromagnet Cr 5 Te 6 Thin Films

Abstract The topological Hall effect (THE) is critical to the exploration of the spin chirality generated by the real‐space Berry curvature, which has attracted worldwide attention for its prospective applications in spintronic devices. However, the prominent THE remains elusive at room temperature,...

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Published inAdvanced functional materials Vol. 33; no. 33
Main Authors Chen, Yequan, Zhu, Yingmei, Lin, Renju, Niu, Wei, Liu, Ruxin, Zhuang, Wenzhuo, Zhang, Xu, Liang, Jinghua, Sun, Wenxuan, Chen, Zhongqiang, Hu, Yongsheng, Song, Fengqi, Zhou, Jian, Wu, Di, Ge, Binghui, Yang, Hongxin, Zhang, Rong, Wang, Xuefeng
Format Journal Article
LanguageEnglish
Published 01.08.2023
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Summary:Abstract The topological Hall effect (THE) is critical to the exploration of the spin chirality generated by the real‐space Berry curvature, which has attracted worldwide attention for its prospective applications in spintronic devices. However, the prominent THE remains elusive at room temperature, which severely restricts the practical integration of chiral spin textures. Here, a colossal intrinsic THE is showed up to ≈1.6 µΩ cm in large‐area ferromagnet Cr 5 Te 6 thin films epitaxially grown by pulsed laser deposition. Such a THE can be maintained until 270 K, which is attributed to the field‐stimulated noncoplanar spin textures induced by the interaction of the in‐plane ferromagnet and antiferromagnet infrastructures. The first‐principles calculations further verify the considerable Dzyaloshinskii‐Moriya interaction in Cr 5 Te 6 . This work not only paves the way for robust chiral spin textures near room temperature in large‐area low‐dimensional ferromagnetic films for practical applications, but also facilitates the development of high‐density and dissipationless spintronic devices.
ISSN:1616-301X
1616-3028
DOI:10.1002/adfm.202302984