中国物理B ›› 2026, Vol. 35 ›› Issue (4): 47101-047101.doi: 10.1088/1674-1056/ae04d9
Yun-Bo Wu(吴云波)1,†, Tong-Rui Li(李彤瑞)1,†, Zhi-Peng Cao(曹志鹏)2, Zhan-Feng Liu(刘站锋)1, Yu-Liang Li(李昱良)1, Zheng-Ming Shang(尚政明)1, Xin Zheng(郑新)1, Hui Tian(田慧)1, Zong-Yi Wang(王宗一)1, Yu-Tong Bi(毕雨桐)1, Hao-Yang Zhou(周浩洋)1, Yi Liu(刘毅)1, Guo-Bin Zhang(张国斌)1, Zheng-Tai Liu(刘正太)3,4, Da-Wei Shen(沈大伟)1, Li-Dong Zhang(张李东)1, Sheng-Tao Cui(崔胜涛)1,‡, and Zhe Sun(孙喆)1,5,6,7,§
Yun-Bo Wu(吴云波)1,†, Tong-Rui Li(李彤瑞)1,†, Zhi-Peng Cao(曹志鹏)2, Zhan-Feng Liu(刘站锋)1, Yu-Liang Li(李昱良)1, Zheng-Ming Shang(尚政明)1, Xin Zheng(郑新)1, Hui Tian(田慧)1, Zong-Yi Wang(王宗一)1, Yu-Tong Bi(毕雨桐)1, Hao-Yang Zhou(周浩洋)1, Yi Liu(刘毅)1, Guo-Bin Zhang(张国斌)1, Zheng-Tai Liu(刘正太)3,4, Da-Wei Shen(沈大伟)1, Li-Dong Zhang(张李东)1, Sheng-Tao Cui(崔胜涛)1,‡, and Zhe Sun(孙喆)1,5,6,7,§
摘要: The Bi square net, a structural motif in a diverse array of layered compounds, has emerged as a desirable system for investigating the interplay between strong spin—orbit coupling, reduced dimensionality, and magnetism. We present a comprehensive study of Y2O2Bi single crystals using high-resolution angle-resolved photoemission spectroscopy (ARPES) and density functional theory (DFT) calculations to elucidate the intrinsic electronic structure of the Bi square net. Our findings reveal a pronounced two-dimensional character of the electronic states, with the Bi square net dominating the low-energy electronic structure. While Y2O2Bi itself exhibits no topological features, DFT calculations on related Bi square net compounds reveal that the surrounding crystal environment can induce non-trivial topology, as exemplified by the topological insulator LiBi. This comparative study establishes a crucial benchmark for understanding Bi square net physics and informs the design of future Bi square net-based quantum materials.
中图分类号: (Electron density of states and band structure of crystalline solids)