Micromagnetic simulations of a pulsed inductive microwave magnetometer (PIMM) experiment are performed using a well established model for exchange bias. The model (Interacting Grain Model) consists of ferromagnetic grains and antiferromagnetic grains with randomly distributed easy axes. A perfectly compensated interface between the ferromagnet and the antiferromagnet is assumed which leads to spin flop coupling. The antiferromagnetic layer is modelled as two totally antiparallel sublattices with a small intergrain exchange between each antiferromagnetic sublattice. Simulations of an experimental PIMM setup provide a shift of the minimum of the resonance frequency which is also observered experimentally
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
The study of the exchange bias (EB) interaction between ferromagnetic (FM) and antiferromagnetic (AF...
A micromagnetic model is used to simulate temperature behavior of a polycrystalline Ni-Mn/Fe-Ni film...
We present ferromagnetic resonance data from a Py film using both a pulsed inductive microwave magne...
We present ferromagnetic resonance data from a Py film using both a pulsed inductive microwave magne...
Domain processes associated with exchange bias in ferromagnetic/antiferromagnetic layers are investi...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) h...
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
We show how compensated antiferromagnetic interfaces can be implemented in the micromagnetic simulat...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) ha...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) ha...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) ha...
This dissertation explores the interactions between spin-polarized currents and individual nanoscale...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (tAFM = 3, 6, 10...
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
The study of the exchange bias (EB) interaction between ferromagnetic (FM) and antiferromagnetic (AF...
A micromagnetic model is used to simulate temperature behavior of a polycrystalline Ni-Mn/Fe-Ni film...
We present ferromagnetic resonance data from a Py film using both a pulsed inductive microwave magne...
We present ferromagnetic resonance data from a Py film using both a pulsed inductive microwave magne...
Domain processes associated with exchange bias in ferromagnetic/antiferromagnetic layers are investi...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) h...
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
We show how compensated antiferromagnetic interfaces can be implemented in the micromagnetic simulat...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) ha...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) ha...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (3, 6, 10 nm) ha...
This dissertation explores the interactions between spin-polarized currents and individual nanoscale...
The magnetothermal behavior of antiferromagnetic IrMn layers of different thickness (tAFM = 3, 6, 10...
Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and ve...
The study of the exchange bias (EB) interaction between ferromagnetic (FM) and antiferromagnetic (AF...
A micromagnetic model is used to simulate temperature behavior of a polycrystalline Ni-Mn/Fe-Ni film...