Spin waves, the collective excitations of spins, can emerge as nonlinear solitons at the nanoscale when excited by an electrical current from a nanocontact. These solitons are expected to have essentially cylindrical symmetry (that is, s-like), but no direct experimental observation exists to confirm this picture. Using a high-sensitivity time-resolved magnetic X-ray microscopy with 50ps temporal resolution and 35nm spatial resolution, we are able to create a real-space spin-wave movie and observe the emergence of a localized soliton with a nodal line, that is, with p-like symmetry. Micromagnetic simulations explain the measurements and reveal that the symmetry of the soliton can be controlled by magnetic fields. Our results broaden the und...
This is the final version. Available from Nature research via the DOI in this record. A dissipative ...
It is demonstrated both analytically and numerically that the properties of spin wave modes excited ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: F...
Spin waves, the collective excitations of spins, can emerge as nonlinear solitons at the nanoscale w...
Spin waves, the collective excitations of spins, can emerge as nonlinear solitons at the nanoscale w...
The prediction and realization of magnetic excitations driven by electrical currents via the spin tr...
We report the direct observation of a localized magnetic soliton in a spin-transfer nanocontact usin...
Magnetic nanoparticles such as FePt in the L1 0 phase are the bedrock of our current data storage te...
We study microwave signal generation as a function of drive current and applied perpendicular magnet...
Spin wave emission and propagation in magnonic waveguides represent a highly promising alternative f...
Antidot lattices have proven to be a powerful tool for spin wave band structure manipulation. Utiliz...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
We study the nonlinear evolution of bulk spin waves in a charge-free, isotropic ferromagnetic nanowi...
This is the final version. Available from Nature research via the DOI in this record. A dissipative ...
It is demonstrated both analytically and numerically that the properties of spin wave modes excited ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: F...
Spin waves, the collective excitations of spins, can emerge as nonlinear solitons at the nanoscale w...
Spin waves, the collective excitations of spins, can emerge as nonlinear solitons at the nanoscale w...
The prediction and realization of magnetic excitations driven by electrical currents via the spin tr...
We report the direct observation of a localized magnetic soliton in a spin-transfer nanocontact usin...
Magnetic nanoparticles such as FePt in the L1 0 phase are the bedrock of our current data storage te...
We study microwave signal generation as a function of drive current and applied perpendicular magnet...
Spin wave emission and propagation in magnonic waveguides represent a highly promising alternative f...
Antidot lattices have proven to be a powerful tool for spin wave band structure manipulation. Utiliz...
Nanocontact spin-torque oscillators are devices in which the generation of propagating spin waves ca...
We study the nonlinear evolution of bulk spin waves in a charge-free, isotropic ferromagnetic nanowi...
This is the final version. Available from Nature research via the DOI in this record. A dissipative ...
It is demonstrated both analytically and numerically that the properties of spin wave modes excited ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: F...