All-electrical spin-wave spectroscopy, Brillouin light scattering, as well as the magneto-optical Kerr effect are combined to study spin-wave propagation through a magnetic antidot lattice nanopatterned into a Ni80Fe20 thin film. The propagation velocities and, in particular, the relaxation are found to depend characteristically on the applied in-plane magnetic field. We explain the observed anisotropies by magnetic field-controlled spin-wave guiding in a network of interconnected nanowires which takes place over distances of up to 20 μm
We perform broadband spin-wave spectroscopy on thin submicrometer-wide Ni80Fe20 magnetic wires. Inte...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
Spin torque oscillators with nanoscale electrical contacts(1-4) are able to produce coherent spin wa...
We report spin wave excitations in a nanopatterned antidot lattice fabricated from a 30-nm thick Ni8...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
Spin-wave modes in Ni80Fe20 thin-film antidot lattices are investigated using micromagnetic simulati...
A 3-D micromagnetic multiscale model has been developed to describe high-frequency excitations in ma...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
A 3-D micromagnetic multiscale model has been developed to describe high-frequency excitations in ma...
An experimental study of spin wave quantization in arrays of micron size magnetic Ni80Fe20 islands (...
This dissertation describes the experiments that investigate new methods to control spin waves by el...
Ferromagnetic antidot arrays have emerged as a system of tremendous interest due to their interestin...
We study spin-wave propagation in 360-nm wide Ni80Fe20 nanowires using all-electrical spin-wave spec...
The magnetic anisotropies of a patterned, exchange biased Fe50 Mn50 /Ni80 Fe20 system are studied us...
We perform broadband spin-wave spectroscopy on thin submicrometer-wide Ni80Fe20 magnetic wires. Inte...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
Spin torque oscillators with nanoscale electrical contacts(1-4) are able to produce coherent spin wa...
We report spin wave excitations in a nanopatterned antidot lattice fabricated from a 30-nm thick Ni8...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
Spin-wave modes in Ni80Fe20 thin-film antidot lattices are investigated using micromagnetic simulati...
A 3-D micromagnetic multiscale model has been developed to describe high-frequency excitations in ma...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
A 3-D micromagnetic multiscale model has been developed to describe high-frequency excitations in ma...
An experimental study of spin wave quantization in arrays of micron size magnetic Ni80Fe20 islands (...
This dissertation describes the experiments that investigate new methods to control spin waves by el...
Ferromagnetic antidot arrays have emerged as a system of tremendous interest due to their interestin...
We study spin-wave propagation in 360-nm wide Ni80Fe20 nanowires using all-electrical spin-wave spec...
The magnetic anisotropies of a patterned, exchange biased Fe50 Mn50 /Ni80 Fe20 system are studied us...
We perform broadband spin-wave spectroscopy on thin submicrometer-wide Ni80Fe20 magnetic wires. Inte...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
Spin torque oscillators with nanoscale electrical contacts(1-4) are able to produce coherent spin wa...