Simultaneous prediction of the magnetic and crystal structure of materials using a genetic algorithm

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Abstract

We introduce a number of extensions and enhancements to a genetic algorithm for crystal structure prediction, to make it suitable to study magnetic systems. The coupling between magnetic properties and crystal structure means that it is essential to take a holistic approach, and we present for the first time, a genetic algorithm that performs a simultaneous global optimisation of both magnetic structure and crystal structure. We first illustrate the power of this approach on a novel test system-the magnetic Lennard-Jones potential-which we define. Then we study the complex interface structures found at the junction of a Heusler alloy and a semiconductor substrate as found in a proposed spintronic device and show the impact of the magnetic interface structure on the device performance.

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Higgins, E. J., Hasnip, P. J., & Probert, M. I. J. (2019). Simultaneous prediction of the magnetic and crystal structure of materials using a genetic algorithm. Crystals, 9(9). https://doi.org/10.3390/cryst9090439

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