Coexistence of the hourglass and nodal-line dispersions in Nb 3 SiTe 6 revealed by ARPES

The non-symmorphic crystal symmetry protection in the layered topological semimetal Nb SiTe can generate exotic band crossings. Herein, high-quality Nb SiTe single crystal was synthesized via chemical vapor transport. The lattice structure of Nb SiTe was characterized by scanning transmission electr...

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Veröffentlicht in:iScience 2022-03, Vol.25 (3), p.103952
Hauptverfasser: Liu, Zhanfeng, Li, Tongrui, Zhang, Bo, Adam, Mukhtar Lawan, Zhu, Wen, Li, Yuliang, Wang, Sheng, Wu, Yunbo, Zhu, Hongen, Cao, Dengfeng, Cui, Qilong, Cui, Shengtao, Liu, Yi, Chen, Shuangming, Sun, Zhe, Song, Li
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Sprache:eng
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Zusammenfassung:The non-symmorphic crystal symmetry protection in the layered topological semimetal Nb SiTe can generate exotic band crossings. Herein, high-quality Nb SiTe single crystal was synthesized via chemical vapor transport. The lattice structure of Nb SiTe was characterized by scanning transmission electron microscopy, X-ray diffraction, core-level photoemission, and Raman spectroscopies. Angle-resolved photoemission spectroscopy was used to reveal its topological properties by presenting band structures along different high-symmetry directions. Our data show that nontrivial band features coexist in Nb SiTe , including an hourglass-type dispersion formed by two bands along the S-R high-symmetry line, two node lines along the S-X path and the S-R-U path, respectively. These results provide a context for the understanding and exploration of the exotic topological properties of Nb SiTe .
ISSN:2589-0042