logo
ResearchBunny Logo
Emergent topological quantum orbits in the charge density wave phase of kagome metal CsV<sub>3</sub>Sb<sub>5</sub>

Physics

Emergent topological quantum orbits in the charge density wave phase of kagome metal CsV<sub>3</sub>Sb<sub>5</sub>

H. Tan, Y. Li, et al.

Dive into the fascinating world of Fermi surface properties in the three-dimensional charge density wave phase of CsV3Sb5. This research by Hengxin Tan and colleagues reveals complex Dirac nodal networks and their impact on quantum orbits, leading to the observation of topological phenomena influenced by spin-orbital coupling.

00:00
00:00
~3 min • Beginner • English
Abstract
The recently discovered kagome materials AV3Sb5 (A = K, Rb, Cs) attract intense research interest in intertwined topology, superconductivity, and charge density waves (CDW). Although the in-plane 2 × 2 CDW is well studied, its out-of-plane structural correlation with the Fermi surface properties is less understood. In this work, we advance the theoretical description of quantum oscillations and investigate the Fermi surface properties in the three-dimensional CDW phase of CsV3Sb5. We derived Fermi-energy-resolved and layer-resolved quantum orbits that agree quantitatively with recent experiments in the fundamental frequency, cyclotron mass, and topology. We reveal a complex Dirac nodal network that would lead to a π Berry phase of a quantum orbit in the spinless case. However, the phase shift of topological quantum orbits is contributed by the orbital moment and Zeeman effect besides the Berry phase in the presence of spin-orbital coupling (SOC). Therefore, we can observe topological quantum orbits with a π phase shift in otherwise trivial orbits without SOC, contrary to common perception. Our work reveals the rich topological nature of kagome materials and paves a path to resolve different topological origins of quantum orbits.
Publisher
npj Quantum Materials
Published On
Jul 28, 2023
Authors
Hengxin Tan, Yongkang Li, Yizhou Liu, Daniel Kaplan, Ziqiang Wang, Binghai Yan
Tags
Fermi surface
charge density wave
quantum orbits
topological quantum orbits
spin-orbital coupling
Dirac nodal network
Berry phase
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny