Efficient determination of the true magnetic structure in a high-throughput ab initio screening: the MDMC method
Olga Yu. Vekilova

TL;DR
The paper introduces the MDMC method, a Monte Carlo-based approach integrated with ab initio calculations, for accurately determining magnetic structures across temperatures, enhancing high-throughput magnetic material screening.
Contribution
The MDMC method provides an efficient, accurate way to determine magnetic structures at all temperatures, including non-Heisenberg systems, improving high-throughput magnetic material analysis.
Findings
Reproduces magnetic structures at various temperatures with small supercells
Couples atomic vibrations and magnetic ordering in simulations
Handles non-collinear and collinear magnetism effectively
Abstract
Finding the true magnetic structure at given external conditions is crucial for describing magnetic materials and predicting their properties. This is especially important for high-throughput screening of potentially good magnets that without adequate description of the magnetic structure may result in an enormous waste of computational resources. I introduce a method, which accurately and efficiently treats magnetic ordering in the course of standard first-principles calculations. The method is suitable for all temperatures and is based on Monte Carlo (MC) technique. At high temperatures MC is coupled to ab initio molecular dynamics, therefore treating atomic vibrations and magnetic ordering simultaneously. The method takes care of the convergence to the true ground-state magnetic structure at 0 K, coupling between spins and atomic vibrations at high temperatures, and spin-spin…
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Taxonomy
TopicsMagnetic Properties of Alloys · Magnetic properties of thin films · Magnetic and transport properties of perovskites and related materials
