We study the switching behavior of thin single domain magnetic elements in the presence of microwave excitation. The application of a microwave field strongly reduces the coercivity of the elements. We show that this effect is most profound at the ferromagnetic resonance frequency of the elements. Observations using time-resolved magneto-optic Kerr microscopy in combination with pulsed microwave excitation further support that the microwave assisted switching process is indeed based on the coherent motion of the magnetization
The switching process of a uniformly magnetized magnetic nanoparticle is considered. The particle is...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
The magnetic domain wall (DW) motion driven by a spin-polarized current opens a new concept for memo...
We study the switching behavior of thin single domain magnetic elements in the presence of microwa...
We study the switching behavior of thin single domain magnetic elements in the presence of microwave...
Microwave assisted switching is a promising way to control the switching field in a magnetic switchi...
Microwave-assisted magnetization switching was investigated using Fe30Co70/AlOx/Ni80Fe20 magnetic tu...
Microwave assisted magnetization switching was investigated using Fe30Co70/Al2O3/Ni80Fe20 magnetic t...
Abstract Magnetization switching of high-anisotropy nanomagnets by a small magnetic field is a key c...
Methods of nonlinear-dynamical-system theory are applied to the study of magnetization dynamics unde...
We demonstrate a detection method for microwave spectroscopy on magnetization reversal dynamics of n...
We have studied the spin dynamics of microscopic permalloy rings at GHz frequencies. Increasing the ...
We report on the effect of a low amplitude microwave current on the switching field of magnetic laye...
AbstractThe minimum switching field threshold and switching speed are key parameters for the magneti...
This dissertation explores the interactions between spin-polarized currents and individual nanoscale...
The switching process of a uniformly magnetized magnetic nanoparticle is considered. The particle is...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
The magnetic domain wall (DW) motion driven by a spin-polarized current opens a new concept for memo...
We study the switching behavior of thin single domain magnetic elements in the presence of microwa...
We study the switching behavior of thin single domain magnetic elements in the presence of microwave...
Microwave assisted switching is a promising way to control the switching field in a magnetic switchi...
Microwave-assisted magnetization switching was investigated using Fe30Co70/AlOx/Ni80Fe20 magnetic tu...
Microwave assisted magnetization switching was investigated using Fe30Co70/Al2O3/Ni80Fe20 magnetic t...
Abstract Magnetization switching of high-anisotropy nanomagnets by a small magnetic field is a key c...
Methods of nonlinear-dynamical-system theory are applied to the study of magnetization dynamics unde...
We demonstrate a detection method for microwave spectroscopy on magnetization reversal dynamics of n...
We have studied the spin dynamics of microscopic permalloy rings at GHz frequencies. Increasing the ...
We report on the effect of a low amplitude microwave current on the switching field of magnetic laye...
AbstractThe minimum switching field threshold and switching speed are key parameters for the magneti...
This dissertation explores the interactions between spin-polarized currents and individual nanoscale...
The switching process of a uniformly magnetized magnetic nanoparticle is considered. The particle is...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
The magnetic domain wall (DW) motion driven by a spin-polarized current opens a new concept for memo...