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  5. Electronic anisotropy and rotational symmetry breaking at a Weyl semimetal/spin ice interface

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Article
en
2025

Electronic anisotropy and rotational symmetry breaking at a Weyl semimetal/spin ice interface

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en
2025
Vol 11 (24)
Vol. 11
DOI: 10.1126/sciadv.adr6202

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Lin Gu
Lin Gu

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Tsung‐Chi Wu
Yueqing Chang
Ang-Kun Wu
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Abstract

In magnetic pyrochlore materials, the interplay of spin-orbit coupling, electronic correlations, and geometrical frustration gives rise to exotic quantum phases, including topological semimetals and spin ice. While these phases have been observed in isolation, the interface-driven phenomena emerging from their interaction have never been realized previously. Here, we report on the discovery of interfacial electronic anisotropy and rotational symmetry breaking at a heterostructure consisting of the Weyl semimetal Eu2Ir2O7 and spin ice Dy2Ti2O7. Subjected to magnetic fields, we unveil a sixfold anisotropic transport response that is theoretically accounted by a Kondo-coupled heterointerface, where the spin ice's field-tuned magnetism induces electron scattering in the Weyl semimetal's topological Fermi-arc states. Furthermore, at elevated magnetic fields, we reveal a twofold anisotropic response indicative of the emergence of a symmetry-broken many-body state. This discovery showcases the potential of pyrochlore frustrated magnet/topological semimetal heterostructures in search of emergent interfacial phenomena.

How to cite this publication

Tsung‐Chi Wu, Yueqing Chang, Ang-Kun Wu, Michael Terilli, Fangdi Wen, M. Kareev, Eun Sang Choi, David Graf, Qinghua Zhang, Lin Gu, Zhentao Wang, J. H. Pixley, J. Chakhalian (2025). Electronic anisotropy and rotational symmetry breaking at a Weyl semimetal/spin ice interface. , 11(24), DOI: https://doi.org/10.1126/sciadv.adr6202.

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Publication Details

Type

Article

Year

2025

Authors

13

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1126/sciadv.adr6202

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