Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics. Here we introduce an alternative formulation to existing three-temperature models for the treatment of spin, electron, and lattice temperatures in magnetization dynamics simulations. In contrast to most existing models of calculations of energy transfer between reservoirs in these types of simulations, the heat distribution of the spin and lattice subsystems is evaluated during the simulation instead of being calculated a priori. The model is applied to investigate the demagnetization and remagnetization of fcc Ni, when subjected to a strong laser pulse. In particular, our model results in a fast interplay between the electron and spin subs...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
The microscopic mechanisms responsible for the ultrafast loss of magnetic order triggered in ferroma...
The microscopic mechanisms responsible for the ultrafast loss of magnetic order triggered in ferroma...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
The laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
The microscopic mechanisms responsible for the ultrafast loss of magnetic order triggered in ferroma...
The microscopic mechanisms responsible for the ultrafast loss of magnetic order triggered in ferroma...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
The laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...