Stark difference in the in-plane anomalous Hall response in Zintl compounds EuA2Sb2 (A = Zn, Cd) thin films

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Lee, Hsiang, Nishihaya, Shinichi, Kriener, Markus, Fujioka, Jun, Nakamura, Ayano, Watanabe, Yuto, Ishizuka, Hiroaki, Uchida, Masaki
Format: Preprint
Publié: 2025
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866912417933426688
author Lee, Hsiang
Nishihaya, Shinichi
Kriener, Markus
Fujioka, Jun
Nakamura, Ayano
Watanabe, Yuto
Ishizuka, Hiroaki
Uchida, Masaki
author_facet Lee, Hsiang
Nishihaya, Shinichi
Kriener, Markus
Fujioka, Jun
Nakamura, Ayano
Watanabe, Yuto
Ishizuka, Hiroaki
Uchida, Masaki
contents Recent observation of the in-plane anomalous Hall effect in magnetic Weyl semimetal EuCd2Sb2 has drawn attention to out-of-plane orbital magnetization induced by an in-plane field component. Here we study EuZn2Sb2, a sister compound of EuCd2Sb2, to demonstrate sensitive changes of the in-plane anomalous Hall effect on the band modulation. The Hall resistivity measured with rotating the magnetic field within the (001) principal plane of EuZn2Sb2 films exhibits a clear three-fold component corresponding to the in-plane anomalous Hall effect, which is distinct from the two-fold component of the planar Hall effect. The in-plane anomalous Hall effect of EuZn2Sb2 is highly contrasting to EuCd2Sb2, especially in terms of its opposite sign and field dependence, which can be explained by model calculations with different band inversion parameters. Our results pave the way for systematically controlling the in-plane anomalous Hall effect and orbital magnetization through elaborate band engineering.
format Preprint
id arxiv_https___arxiv_org_abs_2503_11087
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Stark difference in the in-plane anomalous Hall response in Zintl compounds EuA2Sb2 (A = Zn, Cd) thin films
Lee, Hsiang
Nishihaya, Shinichi
Kriener, Markus
Fujioka, Jun
Nakamura, Ayano
Watanabe, Yuto
Ishizuka, Hiroaki
Uchida, Masaki
Materials Science
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
Recent observation of the in-plane anomalous Hall effect in magnetic Weyl semimetal EuCd2Sb2 has drawn attention to out-of-plane orbital magnetization induced by an in-plane field component. Here we study EuZn2Sb2, a sister compound of EuCd2Sb2, to demonstrate sensitive changes of the in-plane anomalous Hall effect on the band modulation. The Hall resistivity measured with rotating the magnetic field within the (001) principal plane of EuZn2Sb2 films exhibits a clear three-fold component corresponding to the in-plane anomalous Hall effect, which is distinct from the two-fold component of the planar Hall effect. The in-plane anomalous Hall effect of EuZn2Sb2 is highly contrasting to EuCd2Sb2, especially in terms of its opposite sign and field dependence, which can be explained by model calculations with different band inversion parameters. Our results pave the way for systematically controlling the in-plane anomalous Hall effect and orbital magnetization through elaborate band engineering.
title Stark difference in the in-plane anomalous Hall response in Zintl compounds EuA2Sb2 (A = Zn, Cd) thin films
topic Materials Science
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2503.11087