The autoresonant approach to excitation and control of large-amplitude uniformly precessing magnetization structures in finite-length easy axis ferromagnetic nanoparticles is suggested and analyzed within the Landau-Lifshitz-Gilbert model. These structures are excited by using a spatially uniform, oscillating, chirped frequency magnetic field, while the localization is imposed via boundary conditions. The excitation requires the amplitude of the driving oscillations to exceed a threshold. The dissipation effect on the threshold is also discussed. The autoresonant driving effectively compensates the effect of dissipation but lowers the maximum amplitude of the excited structures. Fully nonlinear localized autoresonant solutions are illustrat...
Spin torque oscillators (STOs) are magnetic nano-devices in which strongly non-linear magnetodynamic...
The pattern formation in a magnetic wire forced by a transversal uniform and oscillatory magnetic fi...
The stable assembly of fluctuating nanoparticle clusters on a surface represents a technological cha...
The magnetic moment of a single-domain nanoparticle can be effectively switched on an ultrashort tim...
We study the effect of an elliptically polarized magnetic field on a system of non-interacting, sin...
The excitation of the linear spin wave modes of a soft ferromagnetic free layer of a nanopillar stru...
International audienceStrongly out-of-equilibrium regimes in magnetic nanostructures exhibit novel p...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
Strongly out-of-equilibrium regimes in magnetic nanostructures exhibit novel properties, linked to t...
Magnetic nanoparticles such as FePt in the L10 phase are the bedrock of our current data storage tec...
The stability of the magnetization auto-oscillations of the ferromagnetic free layer of a cylindrica...
The stable assembly of fluctuating nanoparticle clusters on a surface represents a techno- logical ...
We consider a finite-length ferromagnetic nanowire, in which the evolution of the magnetization vect...
This is the final version. Available from the American Physical Society via the DOI in this recordEl...
L’objectif de cette thèse est d’explorer analytiquement et numériquement la dynamique d’aimantation ...
Spin torque oscillators (STOs) are magnetic nano-devices in which strongly non-linear magnetodynamic...
The pattern formation in a magnetic wire forced by a transversal uniform and oscillatory magnetic fi...
The stable assembly of fluctuating nanoparticle clusters on a surface represents a technological cha...
The magnetic moment of a single-domain nanoparticle can be effectively switched on an ultrashort tim...
We study the effect of an elliptically polarized magnetic field on a system of non-interacting, sin...
The excitation of the linear spin wave modes of a soft ferromagnetic free layer of a nanopillar stru...
International audienceStrongly out-of-equilibrium regimes in magnetic nanostructures exhibit novel p...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
Strongly out-of-equilibrium regimes in magnetic nanostructures exhibit novel properties, linked to t...
Magnetic nanoparticles such as FePt in the L10 phase are the bedrock of our current data storage tec...
The stability of the magnetization auto-oscillations of the ferromagnetic free layer of a cylindrica...
The stable assembly of fluctuating nanoparticle clusters on a surface represents a techno- logical ...
We consider a finite-length ferromagnetic nanowire, in which the evolution of the magnetization vect...
This is the final version. Available from the American Physical Society via the DOI in this recordEl...
L’objectif de cette thèse est d’explorer analytiquement et numériquement la dynamique d’aimantation ...
Spin torque oscillators (STOs) are magnetic nano-devices in which strongly non-linear magnetodynamic...
The pattern formation in a magnetic wire forced by a transversal uniform and oscillatory magnetic fi...
The stable assembly of fluctuating nanoparticle clusters on a surface represents a technological cha...