This is the final version. Available on open access from IOP Publishing via the DOI in this recordData availability statement: The data that support the findings of this study are available upon reasonable request from the authors.Non-collinear spin structures in materials that combine perpendicular and in-plane magnetic anisotropies are of great technological interest for microwave and spin wave-assisted magnetization switching. [Co/Pt] multilayers are well-known perpendicular anisotropy materials that have the potential to pin the magnetization of a soft magnetic layer, such as permalloy (Py), that has in-plane anisotropy, thereby forming a magnetic exchange spring. Here we report on multilayered [Co/Pt]/Pt/Py films, where an additional u...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Non-collinear spin structures in materials that combine perpendicular and in-plane magnetic anisotro...
Non-collinear spin structures in materials that combine perpendicular and in-plane magnetic anisotro...
An original approach to tune the ferromagnetic resonance frequency of a soft magnetic Ni80Fe20 (Perm...
An original approach to tune the ferromagnetic resonance frequency of a soft magnetic Ni80Fe20 (Perm...
This article belongs to the Special Issue Recent Advances in Nanomagnetism.Ferromagnetic resonance i...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Non-collinear spin structures in materials that combine perpendicular and in-plane magnetic anisotro...
Non-collinear spin structures in materials that combine perpendicular and in-plane magnetic anisotro...
An original approach to tune the ferromagnetic resonance frequency of a soft magnetic Ni80Fe20 (Perm...
An original approach to tune the ferromagnetic resonance frequency of a soft magnetic Ni80Fe20 (Perm...
This article belongs to the Special Issue Recent Advances in Nanomagnetism.Ferromagnetic resonance i...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a Magnetic Resonance Force Microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...
Using a magnetic resonance force microscope, we compare the ferromagnetic resonance spectra of indiv...