We present a method to compute the magnetic normal modes of a ferromagnetic particle. The method is a hybrid of micromagnetic simulations and a “dynamical matrix” approach similar to that used for vibrational studies. We use the method to calculate the normal modes of an Fe parallelepiped and compare the results with the modes recently extracted from a purely micromagnetic simulation. The results of the two approaches are in excellent agreement. We discuss the pros and cons of both approaches. We also present information on standing waves with wave vector perpendicular to the applied field and on a family of modes localized at the particle ends
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
We present a method to calculate the magnetic normal modes of a ferromagnetic nano-particle. The met...
We have recently developed two methods to calculate the magnetic normal modes of a magnetic nano-par...
We study small magnetization oscillations around a saturated (spatially uniform) equilibrium state i...
We study small magnetization oscillations around a saturated (spatially uniform) equilibrium state i...
We study small magnetization oscillations around a saturated (spatially uniform) equilibrium state i...
The dynamics of magnetization in low-dimensional systems of micromagnets has been a very interesting...
The dynamical matrix method, which has been recently introduced for spin mode calculations in magnet...
A numerical method has been recently proposed to calculate spin modes in ferromagnetic nanoparticles...
Two micromagnetic tools to study the spin dynamics are reviewed. Both approaches are based upon the ...
Two micromagnetic tools to study the spin dynamics are reviewed. Both approaches are based upon the ...
In this paper the spin-wave normal modes in a nanopillar with circular cross-section, excited by the...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
We present a method to calculate the magnetic normal modes of a ferromagnetic nano-particle. The met...
We have recently developed two methods to calculate the magnetic normal modes of a magnetic nano-par...
We study small magnetization oscillations around a saturated (spatially uniform) equilibrium state i...
We study small magnetization oscillations around a saturated (spatially uniform) equilibrium state i...
We study small magnetization oscillations around a saturated (spatially uniform) equilibrium state i...
The dynamics of magnetization in low-dimensional systems of micromagnets has been a very interesting...
The dynamical matrix method, which has been recently introduced for spin mode calculations in magnet...
A numerical method has been recently proposed to calculate spin modes in ferromagnetic nanoparticles...
Two micromagnetic tools to study the spin dynamics are reviewed. Both approaches are based upon the ...
Two micromagnetic tools to study the spin dynamics are reviewed. Both approaches are based upon the ...
In this paper the spin-wave normal modes in a nanopillar with circular cross-section, excited by the...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...
The oscillations of a chain of ferromagnetic nanoparticles around a saturated spatially uniform equi...