Absence of metallicity and bias-dependent resistivity in low-carrier-density EuCd2As2

Fuente: arXiv
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Auteurs principaux: Wang, Yuxiang, Ma, Jianwen, Yuan, Jian, Wu, Wenbin, Zhang, Yong, Mou, Yicheng, Gu, Jiaming, Cheng, Peihong, Shi, Wu, Yuan, Xiang, Zhang, Jinglei, Guo, Yanfeng, Zhang, Cheng
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Publié: 2023
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author Wang, Yuxiang
Ma, Jianwen
Yuan, Jian
Wu, Wenbin
Zhang, Yong
Mou, Yicheng
Gu, Jiaming
Cheng, Peihong
Shi, Wu
Yuan, Xiang
Zhang, Jinglei
Guo, Yanfeng
Zhang, Cheng
author_facet Wang, Yuxiang
Ma, Jianwen
Yuan, Jian
Wu, Wenbin
Zhang, Yong
Mou, Yicheng
Gu, Jiaming
Cheng, Peihong
Shi, Wu
Yuan, Xiang
Zhang, Jinglei
Guo, Yanfeng
Zhang, Cheng
contents EuCd2As2 was theoretically predicted to be a minimal model of Weyl semimetals with a single pair of Weyl points in the ferromagnet state. However, the heavily p-doped EuCd2As2 crystals in previous experiments prevent direct identification of the semimetal hypothesis. Here we present a comprehensive magneto-transport study of high-quality EuCd2As2 crystals with ultralow bulk carrier density (10^13 cm-3). In contrast to the general expectation of a Weyl semimetal phase, EuCd2As2 shows insulating behavior in both antiferromagnetic and ferromagnetic states as well as surface-dominated conduction from band bending. Moreover, the application of a dc bias current can dramatically modulate the resistance by over one order of magnitude, and induce a periodic resistance oscillation due to the geometric resonance. Such nonlinear transport results from the highly nonequilibrium state induced by electrical field near the band edge. Our results suggest an insulating phase in EuCd2As2 and put a strong constraint on the underlying mechanism of anomalous transport properties in this system.
format Preprint
id arxiv_https___arxiv_org_abs_2311_11515
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Absence of metallicity and bias-dependent resistivity in low-carrier-density EuCd2As2
Wang, Yuxiang
Ma, Jianwen
Yuan, Jian
Wu, Wenbin
Zhang, Yong
Mou, Yicheng
Gu, Jiaming
Cheng, Peihong
Shi, Wu
Yuan, Xiang
Zhang, Jinglei
Guo, Yanfeng
Zhang, Cheng
Mesoscale and Nanoscale Physics
Materials Science
EuCd2As2 was theoretically predicted to be a minimal model of Weyl semimetals with a single pair of Weyl points in the ferromagnet state. However, the heavily p-doped EuCd2As2 crystals in previous experiments prevent direct identification of the semimetal hypothesis. Here we present a comprehensive magneto-transport study of high-quality EuCd2As2 crystals with ultralow bulk carrier density (10^13 cm-3). In contrast to the general expectation of a Weyl semimetal phase, EuCd2As2 shows insulating behavior in both antiferromagnetic and ferromagnetic states as well as surface-dominated conduction from band bending. Moreover, the application of a dc bias current can dramatically modulate the resistance by over one order of magnitude, and induce a periodic resistance oscillation due to the geometric resonance. Such nonlinear transport results from the highly nonequilibrium state induced by electrical field near the band edge. Our results suggest an insulating phase in EuCd2As2 and put a strong constraint on the underlying mechanism of anomalous transport properties in this system.
title Absence of metallicity and bias-dependent resistivity in low-carrier-density EuCd2As2
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2311.11515