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  • Getting started
  • Examples
  • User Guide
  • API Reference
  • Discussions
    • Publications
    • Release Notes
    • New in Version 2
  • GitLab
  • Getting started
  • Examples
  • User Guide
  • API Reference
  • Discussions
  • Publications
  • Release Notes
  • New in Version 2
  • GitLab

Section Navigation

Examples:

  • Dispersion of a nanotube in vortex state
  • Absorption of a nanotube with antennae
  • Fixed-frequency FMR of avoided level crossings
  • Double layers of Py / CoFeB
  • Line scans and magnetization-graded waveguides
  • Linewidths of spin waves in magnetic film
  • Rectangular-waveguide dispersion in Damon-Eshbach geometry
  • Field-dependent broadband FMR with rectangular waveguide
  • Transversal hysteresis of rectangular waveguide
  • Spatially dependent uniaxial anisotropy
  • Thin film dispersion exact vs perturbation (Kalinikos & Slavin)
  • Exchange-coupled bilayers (SAF)
  • Mode profiles and their animations (movies)
  • Fe film with cubic anisotropy, angular dependent FMR
  • Channeling mixed Néel-Bloch domain walls with iDMI
  • Dispersion of a solid wire in axial magnetization state
  • Examples

Examples#

This page provides a couple of examples showcasing the different use cases of TetraX. The examples are available in the form of Jupyter notebooks.

Examples:

Dispersion of a nanotube in vortex state
Absorption of a nanotube with antennae
Fixed-frequency FMR of avoided level crossings
Double layers of Py / CoFeB
Line scans and magnetization-graded waveguides
Linewidths of spin waves in magnetic film
Rectangular-waveguide dispersion in Damon-Eshbach geometry
Field-dependent broadband FMR with rectangular waveguide
Transversal hysteresis of rectangular waveguide
Spatially dependent uniaxial anisotropy
Thin film dispersion exact vs perturbation (Kalinikos & Slavin)
Exchange-coupled bilayers (SAF)
Mode profiles and their animations (movies)
Fe film with cubic anisotropy, angular dependent FMR
Channeling mixed Néel-Bloch domain walls with iDMI
Dispersion of a solid wire in axial magnetization state
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