Growth and characterization of Bi(110)/CrTe 2 heterostructures: Exploring interplay between magnetism and topology

The interplay between topology and magnetism is vital for realizing exotic quantum phenomena, significant examples including quantum anomalous Hall effect, axion insulators, and high-order topological states. These states host great potential for future applications in high-speed and low-consumption...

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Veröffentlicht in:Chinese physics B 2024-02, Vol.33 (2), p.26802
Hauptverfasser: Yuan 袁, Zhenyu 震宇, Yang 杨, Fazhi 发枝, Lv 吕, Baiqing 佰晴, Huang 黄, Yaobo 耀波, Qian 钱, Tian 天, Xu 徐, Jinpeng 金朋, Ding 丁, Hong 洪
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Sprache:eng
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Zusammenfassung:The interplay between topology and magnetism is vital for realizing exotic quantum phenomena, significant examples including quantum anomalous Hall effect, axion insulators, and high-order topological states. These states host great potential for future applications in high-speed and low-consumption electronic devices. Despite being extensively investigated, practical platforms are still scarce. In this work, with molecular beam epitaxy (MBE), we provide the first experimental report on high-quality Bi(110)/CrTe 2 magnetic heterostructure. By employing in-situ high-resolution scanning tunneling microscopy, we are able to examine the interaction between magnetism and topology. There is a potential edge state at an energy level above the Fermi level, but no edge states observed near the Fermi level The absence of high-order topological corner states near E F highlights the importance of lattice matching and interface engineering in designing high-order topological states. Our study provides key insights into the interplay between two-dimensional magnetic and topological materials and offers an important dimension for engineering magnetic topological states.
ISSN:1674-1056
2058-3834
DOI:10.1088/1674-1056/ad082a