High-Throughput Search for Metallic Altermagnets by Embedded Dynamical Mean Field Theory
Xuhao Wan, Subhasish Mandal, Yuzheng Guo, Kristjan Haule
Rutgers, The State University of New Jersey Rutgers Sexual and Reproductive Health and Rights West Virginia University Wuhan University
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摘要与影响
We introduce a high-fidelity high-throughput screening (HTS) strategy to accelerate the discovery of altermagnets by combining density functional theory (DFT) with embedded dynamical mean-field theory. Our approach improves over the HTS with the conventional DFT method in the accuracy of predicting metallicity and spin splitting, especially in transition-metal-rich compounds. Our method is based on an automated workflow that incorporates prescreening and symmetry analysis and can be applied to a variety of correlated materials. This approach identified two previously unreported metallic altermagnets, CrSe and CaFe_{4}Al_{8} (in addition to one known altermagnet CrSb), as well as a dozen semiconducting altermagnets among over 2000 magnetic materials. Our findings reveal that while altermagnets are abundant among magnetic materials, only a tiny fraction are metallic.
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材料 / 化学Magnetic and transport properties of perovskites and related materials
Magnetic properties of thin films · Physics of Superconductivity and Magnetism
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