铋
相变
拓扑(电路)
相(物质)
碘化物
材料科学
物理
凝聚态物理
数学
化学
无机化学
量子力学
组合数学
冶金
作者
Wenxuan Zhao,Ming Yang,Xian Du,Yidian Li,K. Y. Zhai,Yingying Hu,Jifeng Han,Yuan Huang,Zhongkai Liu,Yugui Yao,Jincheng Zhuang,Yi Du,Jian Zhou,Yulin Chen,Lexian Yang
标识
DOI:10.1038/s41535-024-00711-w
摘要
Abstract Quasi-one-dimensional (quasi-1D) bismuth iodide Bi 4 I 4 exhibits versatile topological phases of matter including weak topological insulator (WTI) and higher-order topological insulator (HOTI) phases with high tunability in response to external parameters. In this work, performing laser-based angle-resolved photoemission spectroscopy with submicron spatial resolution (micro-ARPES), we reveal the presence of an energy gap on the (100) surface of the low-temperature α-Bi 4 I 4 , providing spectroscopic evidence for the HOTI phase. Conversely, the high-temperature β-Bi 4 I 4 harbors gapless Dirac fermions on the (100) surface alongside gapped states on the (001) surface, thereby establishing a WTI phase. By tracking the temperature evolution of the (100) surface states, we unveil a thermal hysteresis of the surface gap in line with the α-β structural phase transition. Our findings directly evidence a temperature-induced topological phase transition from WTI to HOTI in Bi 4 I 4 , which paves the way to its potential applications at room temperature.
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