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Quantum Oscillations Evidence for Topological Bands in Kagome Metal ScV6Sn6.

Guoxin ZhengYuan ZhuShirin MozaffariNing MaoKuan-Wen ChenKaila JenkinsDechen ZhangAaron ChanHasitha W Suriya ArachchigeRicha MadhogariaMatthew CothrineWilliam R MeierYang ZhangDavid G MandrusLu Li
Published in: Journal of physics. Condensed matter : an Institute of Physics journal (2024)
Metals with kagome lattice provide bulk materials to host both the flat-band and Dirac electronic dispersions. A new family of kagome metals was recently discovered in AV6Sn6. The Dirac electronic structures of this material need strong experimental evidence. In the manuscript, we investigate this problem by resolving the quantum oscillations in both electrical transport and magnetization in ScV6Sn6. The revealed orbits are consistent with the electronic band structure models. Furthermore, the Berry phase of a dominating orbit is revealed to be around π, providing direct evidence for the topological band structure, which is consistent with calculations. Our results demonstrate a rich physics and shed light on the correlated topological ground state of this kagome metal.&#xD.
Keyphrases
  • molecular dynamics
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  • high resolution
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