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Free, publicly-accessible full text available December 1, 2026
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Terilli, Michael; Jia, Xun; Liu, Xiaoran; Laurell, Pontus; Nedić, Ana-Marija; Chang, Yueqing; Wu, Tsung-Chi; Chen, Huyongqing; Li, Hongze; Upton, Mary H; et al (, Nature communications)Free, publicly-accessible full text available July 17, 2026
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Kareev, Mikhail; Liu, Xiaoran; Terilli, Michael; Wen, Fangdi; Wu, Tsung-Chi; Doughty, Dorothy; Li, Hongze; Zhou, Jianshi; Zhang, Qinghua; Gu, Lin; et al (, Nano Letters)Free, publicly-accessible full text available January 22, 2026
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Wu, Tsung-Chi; Chang, Yueqing; Wu, Ang-Kun; Terilli, Michael; Wen, Fangdi; Kareev, Mikhail; Choi, Eun Sang; Graf, David; Zhang, Qinghua; Gu, Lin; et al (, Science Advances)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 Eu2Ir2O7and 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.more » « lessFree, publicly-accessible full text available June 13, 2026
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