Elliptical stability of hopfions in bulk helimagnets
arXiv:2501.05290 · doi:10.1103/PhysRevB.111.174450
Abstract
Magnetic hopfions are three-dimensional topological solitons with non-zero Hopf index in the vector field of material's local magnetization. In this Letter elliptical stability of hopfions with in a classical helimagnet is studied on the basis of a variational model. It is shown that, depending on their internal structure (vortex and antivortex tubes ordering), the hopfions can either be stable in a bulk magnet or unstable with respect to elongation along their central axis. It is found that the energy of stable hopfions is always below the energy of the -skyrmion lattice in the same material, suggesting the possibility to use -skyrmions as a precursor for hopfion nucleation. Stability diagram for hopfions on the magnetic anisotropy-field phase diagram is computed numerically. Explicit analytical expressions for some of its critical lines are derived.
6 pages, 3 figures, accepted to Phys. Rev. B
References in corpus (5)
- Creation and confirmation of Hopfions in magnetic multilayer systems
- Magnetization patterns in ferromagnetic nano-elements as functions of complex variable
- Heliknoton in a film of cubic chiral magnet
- Two types of metastable magnetic hopfions
- Magnetostatic bounds on stability of hopfions in bulk helimagnets