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Multiscale modelling of complex magnetic materials

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If you have a question about this talk, please contact Dr Sun-Woo Kim.

Magnetic materials are an unending source of fascinating physical behaviour which have fundamental appeal but also important technological applications. In order to understand, quantify and predict the properties of magnetic materials, we need information about the magnetic exchange interactions, which control how the different magnetic atoms interact with each other and respond to external stimuli. In this talk, I will give an overview on first-principles approaches to the calculation of magnetic exchange interactions using density functional theory (DFT). First I will outline how the properties of magnetic materials can be computed with and what capabilities are offered by different DFT codes. Next I will discuss how to map DFT calculations to spin models and when such a mapping is expected to work, followed by a discussion of the two main approaches to compute magnetic exchange interactions. Lastly, I will explain how to obtain simple information from the computed magnetic exchange interactions, such as the magnetic ground state and the spin wave spectrum, and how to connect to atomistic spin dynamics, Monte Carlo and micromagnetic simulations.

This talk is part of the Lennard-Jones Centre series.

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