Quantum oscillations in kagome metals (Ti, Zr, Hf)V6Sn6 at Van Hove filling

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: He, Miao, Xu, Xitong, Li, Ding, Zeng, Qingqi, Liu, Yonglai, Zhao, Haitian, Zhou, Shiming, Zhou, Jianhui, Qu, Zhe
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866913340705472512
author He, Miao
Xu, Xitong
Li, Ding
Zeng, Qingqi
Liu, Yonglai
Zhao, Haitian
Zhou, Shiming
Zhou, Jianhui
Qu, Zhe
author_facet He, Miao
Xu, Xitong
Li, Ding
Zeng, Qingqi
Liu, Yonglai
Zhao, Haitian
Zhou, Shiming
Zhou, Jianhui
Qu, Zhe
contents Kagome materials have recently drawn great attention due to the interplay between nontrivial band topology, electron correlations, and Van Hove singularities related many-body orders. Here we report three new vanadium-based kagome metals, TiV6Sn6, ZrV6Sn6, and HfV6Sn6, and conduct a comprehensive investigation of their structural, magnetic, and electrical transport properties. All three compounds exhibit large unsaturated magnetoresistances and multiband Hall effects at low temperatures, indicating the existence of multiple highly mobile carriers. Both the diagonal and off-diagonal resistivity show quantum oscillations with nontrivial Berry phases and high quantum mobilities. First-principles calculations together with quantum oscillation analyses suggest the Van Hove singularities at the M point for the three compounds all located in close vicinity of the Fermi level, and there also exist multiple topological nontrivial band crossings, including a nodal ring and a massive Dirac cone. Our work extends the kagome AM6X6 family and paves the way for searching possible Van Hove physics in the V kagome lattice.
format Preprint
id arxiv_https___arxiv_org_abs_2311_15239
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Quantum oscillations in kagome metals (Ti, Zr, Hf)V6Sn6 at Van Hove filling
He, Miao
Xu, Xitong
Li, Ding
Zeng, Qingqi
Liu, Yonglai
Zhao, Haitian
Zhou, Shiming
Zhou, Jianhui
Qu, Zhe
Strongly Correlated Electrons
Materials Science
Kagome materials have recently drawn great attention due to the interplay between nontrivial band topology, electron correlations, and Van Hove singularities related many-body orders. Here we report three new vanadium-based kagome metals, TiV6Sn6, ZrV6Sn6, and HfV6Sn6, and conduct a comprehensive investigation of their structural, magnetic, and electrical transport properties. All three compounds exhibit large unsaturated magnetoresistances and multiband Hall effects at low temperatures, indicating the existence of multiple highly mobile carriers. Both the diagonal and off-diagonal resistivity show quantum oscillations with nontrivial Berry phases and high quantum mobilities. First-principles calculations together with quantum oscillation analyses suggest the Van Hove singularities at the M point for the three compounds all located in close vicinity of the Fermi level, and there also exist multiple topological nontrivial band crossings, including a nodal ring and a massive Dirac cone. Our work extends the kagome AM6X6 family and paves the way for searching possible Van Hove physics in the V kagome lattice.
title Quantum oscillations in kagome metals (Ti, Zr, Hf)V6Sn6 at Van Hove filling
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2311.15239