Topological Dirac semimetals with accidental band touching between conduction and valence bands protected by time reversal and inversion symmetry are at the frontier of modern condensed matter research. A majority of discovered topological semimetals are nonmagnetic and conserve time reversal symmetry. Here we report the experimental discovery of an antiferromagnetic topological nodal-line semimetallic state in GdSbTe using angle-resolved photoemission spectroscopy. Our systematic study reveals the detailed electronic structure of the paramagnetic state of antiferromagnetic GdSbTe. We observe the presence of multiple Fermi surface pockets including a diamond-shape, and small circular pockets around the zone center and high symmetry X points of the Brillouin zone (BZ), respectively. Furthermore, we observe the presence of a Dirac-like state at the X point of the BZ and the effect of magnetism along the nodal-line direction. Interestingly, our experimental data show a robust  Dirac-like state both below and above the magnetic transition temperature (T(N) â=â13âK). Having a relatively high transition temperature, GdSbTe provides an archetypical platform to study the interaction between magnetism and topological states of matter.
Discovery of topological nodal-line fermionic phase in a magnetic material GdSbTe.
在磁性材料 GdSbTe 中发现拓扑节点线费米子相
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作者:Hosen M Mofazzel, Dhakal Gyanendra, Dimitri Klauss, Maldonado Pablo, Aperis Alex, Kabir Firoza, Sims Christopher, Riseborough Peter, Oppeneer Peter M, Kaczorowski Dariusz, Durakiewicz Tomasz, Neupane Madhab
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2018 | 起止号: | 2018 Sep 5; 8(1):13283 |
| doi: | 10.1038/s41598-018-31296-7 | ||
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