Tuning charge density wave of kagome metal ScV6Sn6

Fuente: arXiv
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Hauptverfasser: Yi, Changjiang, Feng, Xiaolong, Kumar, Nitesh, Felser, Claudia, Shekhar, Chandra
Format: Preprint
Veröffentlicht: 2024
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author Yi, Changjiang
Feng, Xiaolong
Kumar, Nitesh
Felser, Claudia
Shekhar, Chandra
author_facet Yi, Changjiang
Feng, Xiaolong
Kumar, Nitesh
Felser, Claudia
Shekhar, Chandra
contents Compounds with a kagome lattice exhibit intriguing properties and the charge density wave (CDW) adds an additional layer of interest to research on them. In this study, we investigate the temperature and magnetic field dependent electrical properties under a chemical substitution and hydrostatic pressure of ScV6Sn6, a non-magnetic charge density wave (CDW) compound. Substituting 5 % Cr at the V site or applying 1.5 GPa of pressure shifts the CDW to 50 K from 92 K. This shift is attributed to the movement of the imaginary phonon band, as revealed by the phonon dispersion relation. The longitudinal and Hall resistivities respond differently under these stimuli. The magnetoresistance (MR) maintains its quasilinear behavior under pressure, but it becomes quadratic after Cr substitution. The anomalous Hall-like behavior of the parent compound persists up to the respective CDW transition under pressure, after which it sharply declines. In contrast, the longitudinal and Hall resistivities of Cr substituted compounds follow a two-band model and originates from the multi carrier effect. These results clearly highlight the role of phonon contributions in the CDW transition and call for further investigation into the origin of the anomalous Hall-like behavior in the parent compound.
format Preprint
id arxiv_https___arxiv_org_abs_2403_02463
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Tuning charge density wave of kagome metal ScV6Sn6
Yi, Changjiang
Feng, Xiaolong
Kumar, Nitesh
Felser, Claudia
Shekhar, Chandra
Materials Science
Compounds with a kagome lattice exhibit intriguing properties and the charge density wave (CDW) adds an additional layer of interest to research on them. In this study, we investigate the temperature and magnetic field dependent electrical properties under a chemical substitution and hydrostatic pressure of ScV6Sn6, a non-magnetic charge density wave (CDW) compound. Substituting 5 % Cr at the V site or applying 1.5 GPa of pressure shifts the CDW to 50 K from 92 K. This shift is attributed to the movement of the imaginary phonon band, as revealed by the phonon dispersion relation. The longitudinal and Hall resistivities respond differently under these stimuli. The magnetoresistance (MR) maintains its quasilinear behavior under pressure, but it becomes quadratic after Cr substitution. The anomalous Hall-like behavior of the parent compound persists up to the respective CDW transition under pressure, after which it sharply declines. In contrast, the longitudinal and Hall resistivities of Cr substituted compounds follow a two-band model and originates from the multi carrier effect. These results clearly highlight the role of phonon contributions in the CDW transition and call for further investigation into the origin of the anomalous Hall-like behavior in the parent compound.
title Tuning charge density wave of kagome metal ScV6Sn6
topic Materials Science
url https://arxiv.org/abs/2403.02463