arXiv · 2406.12039
Long-range magnetic order induced surface state in GdBi and DyBi
Abstract
The recent discovery of unconventional surface-state pairs, which give rise to Fermi arcs and spin textures, in antiferromagnetically ordered rare-earth monopnictides attracted the interest in these materials. We use angle-resolved photoemission spectroscopy (ARPES) measurements in conjunction with density functional theory (DFT) calculations to investigate the evolution of the electronic structure of GdBi and DyBi. We find that new surface states, including a Dirac cone, emerge in the AFM state. However, they are located along a direction in momentum space that is different than what was found in NdSb, NdBi, and CeBi. The observed changes in the electronic structure are consistent with the presence of AFM-II-A type order.
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Yevhen Kushnirenko, Lin-Lin Wang, Zhuoqi Li, Brinda Kuthanazhi, Benjamin Schrunk, Evan O'Leary, Andrew Eaton, Paul. Canfield, Adam Kaminski. 2024-06-17. Long-range magnetic order induced surface state in GdBi and DyBi. https://doi.org/10.1103/physrevb.110.115151
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