4.7 Article

Method for finding mechanism and activation energy of magnetic transitions, applied to skyrmion and antivortex annihilation

期刊

COMPUTER PHYSICS COMMUNICATIONS
卷 196, 期 -, 页码 335-347

出版社

ELSEVIER
DOI: 10.1016/j.cpc.2015.07.001

关键词

Magnetic transitions; Minimum energy path; Mechanism; Activation energy

资金

  1. Russian Foundation of Basic Research [14-02-00102, 14-22-01113 ofi-m]
  2. Icelandic Research Fund
  3. Academy of Finland [278260]
  4. Nordic-Russian Training Network for Magnetic Nanotechnology [NCM-RU10121]
  5. Goran Gustafsson Foundation

向作者/读者索取更多资源

A method for finding minimum energy paths of transitions in magnetic systems is presented. The path is optimized with respect to orientation of the magnetic vectors while their magnitudes are fixed or obtained from separate calculations. The curvature of the configuration space is taken into account by: (1) using geodesics to evaluate distances and displacements of the system during the optimization, and (2) projecting the path tangent and the magnetic force on the tangent space of the manifold defined by all possible orientations of the magnetic vectors. The method, named geodesic nudged elastic band (GNEB), and its implementation are illustrated with calculations of complex transitions involving annihilation and creation of skyrmion and antivortex states. The lifetime of the latter was determined within harmonic transition state theory using a noncollinear extension of the Alexander-Anderson model. (C) 2015 Elsevier B.V. All rights reserved.

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