We investigate the competing effects of interlayer exchange coupling and magnetostatic coupling in the magnetic heterostructure ([Co/Pt]/NiO/[Co/Pt]) with perpendicular magnetic anisotropy (PMA). This particular heterostructure is unique among coupled materials with PMA in directly exhibiting both ferromagnetic and antiferromagnetic coupling, oscillating between the two as a function of spacer layer thickness. By systematically tuning the coupling interactions via a wedge-shaped NiO spacer layer, we explore the energetics that dictate magnetic domain formation using high resolution magnetic force microscopy coupled with the magneto-optical Kerr effect. This technique probes the microscopic and macroscopic magnetic behavior as a continuous f...
Interlayer exchange coupling that oscillates between antiferromagnetic and ferromagnetic as a functi...
Antiferromagnetically coupled magnetic thin films are promising candidates for the design of new mag...
Antiferromagnetically coupled magnetic thin films are promising candidates for the design of new mag...
We investigate the competing effects of interlayer exchange coupling and magnetostatic coupling in t...
Antiferromagnetically coupled magnetic thin films with perpendicular anisotropy exhibit domain overl...
Antiferromagnetically coupled magnetic thin films with perpendicular anisotropy exhibit domain overl...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Interlayer exchange coupling has been studied in a series of [Pt( tPt Å)/Co(4 Å)]n/NiO( tNiO)/[Co(4 ...
Interlayer exchange coupling has been studied in a series of [Pt( tPt Å)/Co(4 Å)]n/NiO( tNiO)/[Co(4 ...
We investigate the effects of magnetostatic interlayer coupling on the formation of magnetic domains...
The origin of the oscillatory interlayer exchange coupling in [Co/Pt] /NiO/ [Co/Pt] multilayers is i...
Interlayer exchange coupling that oscillates between antiferromagnetic and ferromagnetic as a functi...
Antiferromagnetically coupled magnetic thin films are promising candidates for the design of new mag...
Antiferromagnetically coupled magnetic thin films are promising candidates for the design of new mag...
We investigate the competing effects of interlayer exchange coupling and magnetostatic coupling in t...
Antiferromagnetically coupled magnetic thin films with perpendicular anisotropy exhibit domain overl...
Antiferromagnetically coupled magnetic thin films with perpendicular anisotropy exhibit domain overl...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Spin arrangement at interfaces in layered magnetic materials is of vital importance to the emerging ...
Interlayer exchange coupling has been studied in a series of [Pt( tPt Å)/Co(4 Å)]n/NiO( tNiO)/[Co(4 ...
Interlayer exchange coupling has been studied in a series of [Pt( tPt Å)/Co(4 Å)]n/NiO( tNiO)/[Co(4 ...
We investigate the effects of magnetostatic interlayer coupling on the formation of magnetic domains...
The origin of the oscillatory interlayer exchange coupling in [Co/Pt] /NiO/ [Co/Pt] multilayers is i...
Interlayer exchange coupling that oscillates between antiferromagnetic and ferromagnetic as a functi...
Antiferromagnetically coupled magnetic thin films are promising candidates for the design of new mag...
Antiferromagnetically coupled magnetic thin films are promising candidates for the design of new mag...