Quantum Oscillations Evidence for Topological Bands in Kagome Metal ScV6Sn6

Fuente: arXiv
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Main Authors: Zheng, Guoxin, Zhu, Yuan, Mozaffari, Shirin, Mao, Ning, Chen, Kuan-Wen, Jenkins, Kaila, Zhang, Dechen, Chan, Aaron, Arachchige, Hasitha W. Suriya, Madhogaria, Richa P., Cothrine, Matthew, Meier, William R., Zhang, Yang, Mandrus, David, Li, Lu
Format: Preprint
Published: 2024
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author Zheng, Guoxin
Zhu, Yuan
Mozaffari, Shirin
Mao, Ning
Chen, Kuan-Wen
Jenkins, Kaila
Zhang, Dechen
Chan, Aaron
Arachchige, Hasitha W. Suriya
Madhogaria, Richa P.
Cothrine, Matthew
Meier, William R.
Zhang, Yang
Mandrus, David
Li, Lu
author_facet Zheng, Guoxin
Zhu, Yuan
Mozaffari, Shirin
Mao, Ning
Chen, Kuan-Wen
Jenkins, Kaila
Zhang, Dechen
Chan, Aaron
Arachchige, Hasitha W. Suriya
Madhogaria, Richa P.
Cothrine, Matthew
Meier, William R.
Zhang, Yang
Mandrus, David
Li, Lu
contents Metals with kagome lattice provide bulk materials to host both the flat-band and Dirac electronic dispersions. A new family of kagome metals is recently discovered in AV6Sn6. The Dirac electronic structures of this material need more experimental evidence to confirm. 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.
format Preprint
id arxiv_https___arxiv_org_abs_2409_05634
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum Oscillations Evidence for Topological Bands in Kagome Metal ScV6Sn6
Zheng, Guoxin
Zhu, Yuan
Mozaffari, Shirin
Mao, Ning
Chen, Kuan-Wen
Jenkins, Kaila
Zhang, Dechen
Chan, Aaron
Arachchige, Hasitha W. Suriya
Madhogaria, Richa P.
Cothrine, Matthew
Meier, William R.
Zhang, Yang
Mandrus, David
Li, Lu
Strongly Correlated Electrons
Metals with kagome lattice provide bulk materials to host both the flat-band and Dirac electronic dispersions. A new family of kagome metals is recently discovered in AV6Sn6. The Dirac electronic structures of this material need more experimental evidence to confirm. 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.
title Quantum Oscillations Evidence for Topological Bands in Kagome Metal ScV6Sn6
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2409.05634