Intrinsic magnetotransport and orientation dependent topological Hall effect in EuAuBi

Fuente: arXiv
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Main Authors: Lipika, Sneh, Singh, Shobha, Koban, Ralf, Schnelle, Walter, Manna, Kaustuv
Format: Preprint
Published: 2026
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_version_ 1866911628125011968
author Lipika
Sneh
Singh, Shobha
Koban, Ralf
Schnelle, Walter
Manna, Kaustuv
author_facet Lipika
Sneh
Singh, Shobha
Koban, Ralf
Schnelle, Walter
Manna, Kaustuv
contents We report the growth of high-quality single crystals of the magnetic topological semimetal EuAuBi using a Pb flux method, which effectively suppresses the formation of secondary Au2Bi impurity phases that were prevalent in the previously reported Bi flux grown crystals. This growth optimization enables reliable investigation of the intrinsic physical properties of EuAuBi. Importantly, Pb flux growth stablilizes c axis oriented single crystals, enabling Hall measurements in a previously unexplored geometry. In this configuration (I parallel to c, B perpendicular to c), a finite residual Hall contribution, known as topological Hall signal emerges below the antiferromagnetic ordering temperature and within a narrow magnetic field range. This Hall contribution coincides with the metamagnetic transitions, anomalies in magnetoresistance, and an additional feature in field-dependent specific heat, indicating strong coupling between the electronic transport and field induced magnetic reconstructions. Consequently, these findings underscore the significance of crystal orientation in uncovering topological transport signatures in magnetic semimetals such as EuAuBi.
format Preprint
id arxiv_https___arxiv_org_abs_2604_25365
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Intrinsic magnetotransport and orientation dependent topological Hall effect in EuAuBi
Lipika
Sneh
Singh, Shobha
Koban, Ralf
Schnelle, Walter
Manna, Kaustuv
Strongly Correlated Electrons
We report the growth of high-quality single crystals of the magnetic topological semimetal EuAuBi using a Pb flux method, which effectively suppresses the formation of secondary Au2Bi impurity phases that were prevalent in the previously reported Bi flux grown crystals. This growth optimization enables reliable investigation of the intrinsic physical properties of EuAuBi. Importantly, Pb flux growth stablilizes c axis oriented single crystals, enabling Hall measurements in a previously unexplored geometry. In this configuration (I parallel to c, B perpendicular to c), a finite residual Hall contribution, known as topological Hall signal emerges below the antiferromagnetic ordering temperature and within a narrow magnetic field range. This Hall contribution coincides with the metamagnetic transitions, anomalies in magnetoresistance, and an additional feature in field-dependent specific heat, indicating strong coupling between the electronic transport and field induced magnetic reconstructions. Consequently, these findings underscore the significance of crystal orientation in uncovering topological transport signatures in magnetic semimetals such as EuAuBi.
title Intrinsic magnetotransport and orientation dependent topological Hall effect in EuAuBi
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2604.25365