Published January 8, 2024 | Version v1
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Systematic determination of a material's magnetic ground state from first principles

  • 1. Department of Physics and Astronomy, West Virginia University, Morgantown, WV 26505-6315, USA
  • 2. Physique Théorique des Matériaux, QMAT, CESAM, Université de Liége, B-4000 Sart-Tilman, Belgium
  • 3. Physics and Materials Science Research Unit, University of Luxembourg, 162a avenue de la Fäıencerie, L-1511 Luxembourg, Luxembourg

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Description

We present a self-consistent method based on first-principles calculations to determine the magnetic ground state of materials, regardless of their dimensionality. Our methodology is founded on satisfying the stability conditions derived from the linear spin wave theory (LSWT) by optimizing the magnetic structure iteratively. We demonstrate the effectiveness of our method by successfully predicting the experimental magnetic structures of NiO, FePS₃, FeP, MnF₂, FeCl₂, and CuO. In each case, we compared our results with available experimental data and existing theoretical calculations reported in the literature. Finally, we discuss the validity of the method and the possible extensions.

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References

Preprint
A. T. Mora, X. He, E. Bousquet, L. Wirtz, A. Romero, Systematic determination of a material's magnetic ground state from first principles (2023), doi: 10.21203/rs.3.rs-3179548/v1