Print ISSN:1674-1056  |  Online ISSN:2058-3834  |  CN:11-5639/O4
  • Cite this article:

    Xue Yang, Jijian Liu, Xinyi Zheng, Lei Xu, Lihong Hu, Sicheng Zhou, Siyuan Zhou, Ximing Zhang, Bingbing Tong, Jie Shen, Zhaozheng Lyu, Xiunian Jing, Fanming Qu, Peiling Li, Jiadong Zhou, Guangtong Liu, Li Lü. Anomalous Hall effect and Lifshitz transition in Fe3Sn2 nanosheetsJ. Chin. Phys. B, 2026, 35(1): 017503.
    Xue Yang, Jijian Liu, Xinyi Zheng, Lei Xu, Lihong Hu, Sicheng Zhou, Siyuan Zhou, Ximing Zhang, Bingbing Tong, Jie Shen, Zhaozheng Lyu, Xiunian Jing, Fanming Qu, Peiling Li, Jiadong Zhou, Guangtong Liu, Li Lü. Anomalous Hall effect and Lifshitz transition in Fe3Sn2 nanosheetsJ. Chin. Phys. B, 2026, 35(1): 017503.
  • Anomalous Hall effect and Lifshitz transition in Fe3Sn2 nanosheets

    • Fe3Sn2, a ferromagnetic metal with a kagome lattice, serves as an ideal platform for exploring topological electronic states and Berry curvature due to its unique band structure. However, systematic reports on the transport properties of Fe3Sn2 nanosheets remain scarce. We present temperature-dependent transport property measurements of Fe3Sn2 nanosheets synthesized via chemical vapor deposition on Si/SiO2 substrates. The samples exhibit a robust anomalous Hall effect from 40 K to 300 K, along with a magnetoresistance sign reversal at 40 K at high magnetic fields, indicating a spin reorientation from in-plane to out-of-plane. Notably, a sharp crossover in the dominant transport contribution from electrons to holes near 200 K is observed, accompanied by distinct anomalous Hall behaviors in the two regimes, indicating a temperature-induced Lifshitz transition within the multi-band system. This divergence is potentially linked to a topological reconstruction of the Fermi surface across the transition. Our findings highlight the tunability of topological transport in two-dimensional kagome magnets and provide new insights into the interplay between band topology, dimensionality and magnetic order.
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