Pseudogap behavior in charge density wave kagome material ScVSn revealed by magnetotransport measurements
arXiv:2306.10230 · doi:10.1038/s41535-023-00600-8
Abstract
Over the last few years, significant attention has been devoted to studying the kagome materials AVSb (A = K, Rb, Cs) due to their unconventional superconductivity and charge density wave (CDW) ordering. Recently ScVSn was found to host a CDW below 90K, and, like AVSb, it contains a kagome lattice comprised only of V ions. Here we present a comprehensive magnetotransport study on ScVSn. We discovered several anomalous transport phenomena above the CDW ordering temperature, including insulating behavior in interlayer resistivity, a strongly temperature-dependent Hall coefficient, and violation of Kohler's rule. All these anomalies can be consistently explained by a progressive decrease in carrier densities with decreasing temperature, suggesting the formation of a pseudogap. Our findings suggest that high-temperature CDW fluctuations play a significant role in determining the normal state electronic properties of ScVSn.
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Cited by in corpus (12)
- Kagome metals
- Extended Kohler's Rule of Magnetoresistance in TaCoTe
- Quantum Oscillations Evidence for Topological Bands in Kagome Metal ScV6Sn6
- Frustrated Ising charge correlations in the kagome metal ScVSn
- Anomalous Magnetotransport in the Paramagnetic State of a Magnetic Kagome Metal EuTiBi
- Orbital selective commensurate modulations of the local density of states in ScV6Sn6 probed by nuclear spins
- Discovery of an Intermediate Nematic State in a Bilayer Kagome Metal ScV6Sn6
- Interleaved bond frustration in a triangular lattice antiferromagnet
- Pressure suppresses the density wave order in kagome metal LuNbSn
- Anomalous Nernst Effect and Its Implications for Time-Reversal Symmetry Breaking in Kagome Metal ScV6Sn6
- Beyond kagome: -bands in kagome metals
- Tunable topological phase in 2D ScVSn kagome material