We present a combined analytical and numerical study on double-vortex spin-torque nano-oscillators and describe a mechanism that suppresses the windmill modes. The magnetization dynamics is dominated by the gyrotropic precession of the vortex in one of the ferromagnetic layers. In the other layer, the vortex gyration is strongly damped. The dominating layer for the magnetization dynamics is determined by the sign of the product between sample current and the chiralities. Measurements on Fe/Ag/Fe nanopillars support these findings. The results open up a new perspective for building high quality-factor spin-torque oscillators operating at selectable, well-separated frequency bands
This dissertation is a summary of my investigations of the effects of spinpolarized currents on the ...
Phase locking dynamics of the coupled vortex cores in two identical magnetic spin valves induced by ...
© 2015 IEEE. We perform a comparative study of spin-transfer-induced excitation of the gyrotropic mo...
The gyrotropic rotation around the equilibrium position constitutes the fundamental excitation of ma...
The subject of this work are lithographically defined cylindrical nanopillars containing a stack of ...
Spin-torque oscillators (STOs) are a promising application for the spin-transfer torque effect. The ...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe study the magnetization ...
We investigate the impact of the DC current-induced Ampère–Oersted feld on the dynamics of a vortex ...
A detailed analytical and numerical study of the spin wave modes of two nanopillar spin torque nano-...
In this paper, we propose to control the strength of phase-locking between two dipolarly coupled vor...
International audienceA model for a spin-torque nano-oscillator based on the self-sustained oscillat...
International audienceThe mutual interaction between the different eigenmodes of a spin-torque oscil...
International audienceThe influence of dynamic coupling in between magnetic layers of a standard spi...
Transfer of angular momentum from a spin-polarized current to a ferromagnet provides an efficient me...
Current-driven magnetization dynamics in spin torque nano-oscillators (STNOs) is intensely investiga...
This dissertation is a summary of my investigations of the effects of spinpolarized currents on the ...
Phase locking dynamics of the coupled vortex cores in two identical magnetic spin valves induced by ...
© 2015 IEEE. We perform a comparative study of spin-transfer-induced excitation of the gyrotropic mo...
The gyrotropic rotation around the equilibrium position constitutes the fundamental excitation of ma...
The subject of this work are lithographically defined cylindrical nanopillars containing a stack of ...
Spin-torque oscillators (STOs) are a promising application for the spin-transfer torque effect. The ...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe study the magnetization ...
We investigate the impact of the DC current-induced Ampère–Oersted feld on the dynamics of a vortex ...
A detailed analytical and numerical study of the spin wave modes of two nanopillar spin torque nano-...
In this paper, we propose to control the strength of phase-locking between two dipolarly coupled vor...
International audienceA model for a spin-torque nano-oscillator based on the self-sustained oscillat...
International audienceThe mutual interaction between the different eigenmodes of a spin-torque oscil...
International audienceThe influence of dynamic coupling in between magnetic layers of a standard spi...
Transfer of angular momentum from a spin-polarized current to a ferromagnet provides an efficient me...
Current-driven magnetization dynamics in spin torque nano-oscillators (STNOs) is intensely investiga...
This dissertation is a summary of my investigations of the effects of spinpolarized currents on the ...
Phase locking dynamics of the coupled vortex cores in two identical magnetic spin valves induced by ...
© 2015 IEEE. We perform a comparative study of spin-transfer-induced excitation of the gyrotropic mo...