Analytic and numerical studies on curved magnetic nano-objects predict numerous exciting effects that can be referred to as magneto-chiral effects, which do not originate from intrinsic Dzyaloshinskii-Moriya interaction or interface-induced anisotropies. In contrast, these chiral effects stem from isotropic exchange or dipole-dipole interaction, present in all magnetic materials, which acquire asymmetric contributions in case of curved geometry of the specimen. As a result, for example, the spin-wave dispersion in round magnetic nanotubes becomes asymmetric; namely, spin waves of the same frequency propagating in opposite directions along the nanotube exhibit different wavelenghts. Here, using time-resolved scanning transmission x-ray micro...
The scientific and technological exploration of artificially designed three-dimensional magnetic nan...
Spin waves are the low-energy excitations of magnetically ordered materials. They are key elements i...
Dipolar magnon-magnon coupling has long been predicted in nano-patterned artificial spin systems. Ho...
Analytic and numerical studies on curved magnetic nano-objects predict numerous exciting effects tha...
Analytic and numerical studies on curved magnetic nano objects predict numerous exciting effects tha...
We investigate how geometry influences spin dynamics in polygonal magnetic nanotubes. We find that l...
We investigate how geometry influences spin dynamics in polygonal magnetic nanotubes. We find that l...
Surface curvature of magnetic systems can lead to many static and dynamic effects which are not pres...
In the framework of this thesis the magnetic ground state of hexagonally shaped ferromagnetic nanotu...
We present a detailed analytical derivation of the spin wave (SW) dispersion relation in magnetic na...
Magnonic activity, a chiral effect in magnetization dynamics, was recently reported in ferromagnetic...
This is the final version of the article. Available from the American Institute of Physics via the D...
We have investigated the equilibrium states of ferromagnetic single wall nanotubes by means of atomi...
This is the final version. Available from American Physical Society via the DOI in this record. We e...
PublishedJournal ArticleWe report a study of the dispersion of spin waves in a hexagonal array of in...
The scientific and technological exploration of artificially designed three-dimensional magnetic nan...
Spin waves are the low-energy excitations of magnetically ordered materials. They are key elements i...
Dipolar magnon-magnon coupling has long been predicted in nano-patterned artificial spin systems. Ho...
Analytic and numerical studies on curved magnetic nano-objects predict numerous exciting effects tha...
Analytic and numerical studies on curved magnetic nano objects predict numerous exciting effects tha...
We investigate how geometry influences spin dynamics in polygonal magnetic nanotubes. We find that l...
We investigate how geometry influences spin dynamics in polygonal magnetic nanotubes. We find that l...
Surface curvature of magnetic systems can lead to many static and dynamic effects which are not pres...
In the framework of this thesis the magnetic ground state of hexagonally shaped ferromagnetic nanotu...
We present a detailed analytical derivation of the spin wave (SW) dispersion relation in magnetic na...
Magnonic activity, a chiral effect in magnetization dynamics, was recently reported in ferromagnetic...
This is the final version of the article. Available from the American Institute of Physics via the D...
We have investigated the equilibrium states of ferromagnetic single wall nanotubes by means of atomi...
This is the final version. Available from American Physical Society via the DOI in this record. We e...
PublishedJournal ArticleWe report a study of the dispersion of spin waves in a hexagonal array of in...
The scientific and technological exploration of artificially designed three-dimensional magnetic nan...
Spin waves are the low-energy excitations of magnetically ordered materials. They are key elements i...
Dipolar magnon-magnon coupling has long been predicted in nano-patterned artificial spin systems. Ho...