Proposal for a micromagnetic standard problem for materials with Dzyaloshinskii-Moriya interaction
David Cort\'es-Ortu\~no, Marijan Beg, Vanessa Nehruji, Leoni Breth,, Ryan Pepper, Thomas Kluyver, Gary Downing, Thorsten Hesjedal, Peter Hatton,, Tom Lancaster, Riccardo Hertel, Ondrej Hovorka, Hans Fangohr

TL;DR
This paper proposes a standardized set of micromagnetic simulation problems involving Dzyaloshinskii-Moriya interaction to benchmark and validate different computational tools for studying skyrmions and related magnetic phenomena.
Contribution
It introduces a comprehensive sequence of computational problems for DMI materials, enabling consistent testing and validation of micromagnetic simulation software.
Findings
Provides well-defined test problems for 1D, 2D, and 3D domains.
Includes validation cases for spin wave dynamics and skyrmion formation.
Facilitates benchmarking of micromagnetic simulation packages.
Abstract
Understanding the role of the Dzyaloshinskii-Moriya interaction (DMI) for the formation of helimagnetic order, as well as the emergence of skyrmions in magnetic systems that lack inversion symmetry, has found increasing interest due to the significant potential for novel spin based technologies. Candidate materials to host skyrmions include those belonging to the B20 group such as FeGe, known for stabilising Bloch-like skyrmions, interfacial systems such as cobalt multilayers or Pd/Fe bilayers on top of Ir(111), known for stabilising N\'eel-like skyrmions, and, recently, alloys with a crystallographic symmetry where anti-skyrmions are stabilised. Micromagnetic simulations have become a standard approach to aid the design and optimisation of spintronic and magnetic nanodevices and are also applied to the modelling of device applications which make use of skyrmions. Several public domain…
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