Static and dynamic magnetic solitons play a critical role in applied nanomagnetism. Magnetic droplets, a type of non-topological dissipative soliton, can be nucleated and sustained in nanocontact spin-torque oscillators with perpendicular magnetic anisotropy free layers. Here, we perform a detailed experimental determination of the full droplet nucleation boundary in the current–field plane for a wide range of nanocontact sizes and demonstrate its excellent agreement with an analytical expression originating from a stability analysis. Our results reconcile recent contradicting reports of the field dependence of the droplet nucleation. Furthermore, our analytical model both highlights the relation between the fixed layer material and the dro...
Dissipative solitons have been reported in a wide range of nonlinear systems, but the observation of...
Droplet solitons are large amplitude localized spin-wave excitations that can be created in magnetic...
The propagation and controlled manipulation of strongly nonlinear, two-dimensional solitonic states ...
Static and dynamic magnetic solitons play a critical role in applied nanomagnetism. Magnetic droplet...
We present recent experimental and numerical advancements in the understanding of spin transfer torq...
Spin-torque nano-oscillators (STNOs) are nanoscale spintronic devices capable of generating highly t...
We study microwave signal generation as a function of drive current and applied perpendicular magnet...
Magnetic dissipative droplets are localized, strongly nonlinear dynamical modes excited in nanoconta...
Magnetic droplet solitons are dynamical magnetic textures that form due to an attractive interaction...
This is the final version. Available from Nature research via the DOI in this record. A dissipative ...
Magnetic droplets are non topological magnetodynamical solitons displaying a wide range of complex d...
Dissipative solitons have been reported in a wide range of nonlinear systems, but the observation of...
The magnetic dissipative droplet is a strongly nonlinear wave structure that can be stabilized in a ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: F...
Dissipative solitons have been reported in a wide range of nonlinear systems, but the observation of...
Droplet solitons are large amplitude localized spin-wave excitations that can be created in magnetic...
The propagation and controlled manipulation of strongly nonlinear, two-dimensional solitonic states ...
Static and dynamic magnetic solitons play a critical role in applied nanomagnetism. Magnetic droplet...
We present recent experimental and numerical advancements in the understanding of spin transfer torq...
Spin-torque nano-oscillators (STNOs) are nanoscale spintronic devices capable of generating highly t...
We study microwave signal generation as a function of drive current and applied perpendicular magnet...
Magnetic dissipative droplets are localized, strongly nonlinear dynamical modes excited in nanoconta...
Magnetic droplet solitons are dynamical magnetic textures that form due to an attractive interaction...
This is the final version. Available from Nature research via the DOI in this record. A dissipative ...
Magnetic droplets are non topological magnetodynamical solitons displaying a wide range of complex d...
Dissipative solitons have been reported in a wide range of nonlinear systems, but the observation of...
The magnetic dissipative droplet is a strongly nonlinear wave structure that can be stabilized in a ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: F...
Dissipative solitons have been reported in a wide range of nonlinear systems, but the observation of...
Droplet solitons are large amplitude localized spin-wave excitations that can be created in magnetic...
The propagation and controlled manipulation of strongly nonlinear, two-dimensional solitonic states ...