Observation of nontrivial topological electronic structure of orthorhombic SnSe

PHYSICAL REVIEW MATERIALS 6:5 (2022) ARTN 054201

Authors:

HJ Zheng, WJ Shi, CW Wang, YY Lv, W Xia, BH Li, F Wu, SM He, K Huang, ST Cui, C Chen, HF Yang, AJ Liang, MX Wang, Z Sun, SH Yao, YB Chen, YF Guo, QX Mi, LX Yang, MS Bahramy, ZK Liu, YL Chen

Pressure-induced superconductivity in the noncentrosymmetric Weyl semimetals LaAlX (X = Si, Ge)

PHYSICAL REVIEW B 105:17 (2022) ARTN 174502

Authors:

Weizheng Cao, Ningning Zhao, Cuiying Pei, Qi Wang, Qinghua Zhang, Tianping Ying, Yi Zhao, Lingling Gao, Changhua Li, Na Yu, Lin Gu, Yulin Chen, Kai Liu, Yanpeng Qi

Measurement of electronic structure in van der Waals ferromagnet Fe5–x GeTe2

Chinese Physics B IOP Publishing 31:5 (2022) 057404

Authors:

Kui Huang, Zhenxian Li, Deping Guo, Haifeng Yang, Yiwei Li, Aiji Liang, Fan Wu, Lixuan Xu, Lexian Yang, Wei Ji, Yanfeng Guo, Yulin Chen, Zhongkai Liu

Robust kagome electronic structure in the topological quantum magnets XMn6Sn6 (X=Dy,Tb,Gd, Y)

Physical Review B 105:15 (2022)

Authors:

X Gu, C Chen, WS Wei, LL Gao, JY Liu, X Du, D Pei, JS Zhou, RZ Xu, ZX Yin, WX Zhao, YD Li, C Jozwiak, A Bostwick, E Rotenberg, D Backes, LSI Veiga, S Dhesi, T Hesjedal, G Van Der Laan, HF Du, WJ Jiang, YP Qi, G Li, WJ Shi, ZK Liu, YL Chen, LX Yang

Abstract:

Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, the kagome lattice is an ideal platform to study the rich interplay between topology, magnetism, and electronic correlation. In this work, combining high-resolution angle-resolved photoemission spectroscopy and ab initio calculation, we systematically investigate the electronic structure of XMn6Sn6 (X=Dy,Tb,Gd,Y) family compounds. We observe the Dirac fermion and the flat band arising from the magnetic kagome lattice of Mn atoms. Interestingly, the flat band locates in the same energy region in all compounds studied, regardless of their different magnetic ground states and 4f electronic configurations. These observations suggest a robust Mn magnetic kagome lattice across the XMn6Sn6 family, thus providing an ideal platform for the search for, and investigation of, new emergent phenomena in magnetic topological materials.

Quantum Oscillations in Noncentrosymmetric Weyl Semimetal SmAlSi

Chinese Physics Letters IOP Publishing 39:4 (2022) 047501

Authors:

Weizheng Cao, Yunlong Su, Qi Wang, Cuiying Pei, Lingling Gao, Yi Zhao, Changhua Li, Na Yu, Jinghui Wang, Zhongkai Liu, Yulin Chen, Gang Li, Jun Li, Yanpeng Qi