Ultrafast demagnetization dynamics of 4f antiferromagnets
Maryna Pankratova, Vladislav Borisov, Danny Thonig, Rohit Pathak, Yoav, William Windsor, Laurenz Rettig, Olle Eriksson, Arthur Ernst, and Anders, Bergman

TL;DR
This study investigates the ultrafast demagnetization processes in 4f antiferromagnets using advanced simulations, revealing a two-step demagnetization behavior and the linear dependence of demagnetization amplitude on laser fluence.
Contribution
It combines density functional theory with atomistic spin-lattice dynamics to analyze the effects of 4f states and laser excitation on antiferromagnetic demagnetization dynamics, providing new insights into the mechanisms involved.
Findings
Demagnetization exhibits a two-step process with a fast initial drop.
Demagnetization amplitude scales linearly with laser fluence.
Lattice dynamics influence ultrafast demagnetization behavior.
Abstract
We study the ultrafast demagnetization dynamics of LnRhSi (Ln Pr, Nd, Sm, Gd, Tb, Dy, Ho) antiferromagnets (AFM) after excitation by a laser pulse, using a combination of density functional theory and atomistic spin and spin-lattice dynamics simulations. First, we calculate the Heisenberg interactions using the magnetic force theorem and compare two approaches, where the states of the rare earths are treated as frozen core states or as valence states with added correlation corrections. We find marked quantitative differences in terms of predicted Curie temperature for most of the systems, especially for those with large orbital moment of the rare earth cations. This can be attributed to the importance of indirect interactions of the states through the Si states, which depend on the binding energy of the states and coexists with RKKY-type interactions mediated…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Magnetic properties of thin films · Iron-based superconductors research
