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Author Correction:High-throughput study of the anomalous Hall effect
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作者 akubŽelezný yuta yahagi +2 位作者 Carles Gomez-Olivella Yang Zhang Yan Sun 《npj Computational Materials》 SCIE EI CSCD 2023年第1期584-584,共1页
Correction to:npj Computational Materials https://doi.org/10.1038/s41524-023-01113-5,published online 22 August 2023 In this article the author name Carlés Gomez-Ollivella was incorrectly written as Carles-Gomez ... Correction to:npj Computational Materials https://doi.org/10.1038/s41524-023-01113-5,published online 22 August 2023 In this article the author name Carlés Gomez-Ollivella was incorrectly written as Carles-Gomez Olivella.The original article has been corrected. 展开更多
关键词 OLIVE corrected THROUGHPUT
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High-throughput study of the anomalous Hall effect
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作者 JakubŽelezný yuta yahagi +2 位作者 Carles Gomez-Olivella Yang Zhang Yan Sun 《npj Computational Materials》 SCIE EI CSCD 2023年第1期767-774,共8页
Despite its long history,the anomalous Hall continues to attract attention due to its complex origins,its connection to topology,and its use as a probe of magnetic order.In this work we investigate the anomalous Hall ... Despite its long history,the anomalous Hall continues to attract attention due to its complex origins,its connection to topology,and its use as a probe of magnetic order.In this work we investigate the anomalous Hall effect in 2871 ferromagnetic materials using an automatic high-throughput calculation scheme.We analyze general properties of the effect,such as its reliance on spin-orbit coupling strength and magnetization.In materials with the largest anomalous Hall effect,we find that symmetry-protected band degeneracies in the non-relativistic electronic structure,such as mirror symmetry-protected nodal lines,are typically responsible for the large effect.Furthermore,we examine the dependence of the anomalous Hall effect on magnetization direction and demonstrate deviations from the commonly assumed expression j^(AHE)~M×E. 展开更多
关键词 EFFECT SYMMETRY protected
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