The sensitivity of the magneto-optical Kerr response to electronic thermalization processes in ultrafast pump-probe experiments is studied by OF evaluating the complex conductivity tensor of Ni for non-equilibrium electron distributions. The electronic structure and optical matrix elements are calculated within density functional theory. To account for the electronic redistributions generated by the intense pump-laser pulse during the initial stages of electronic thermalization, two kinds of model electron distributions are considered which mimic the so-called dichroic bleaching or state-blocking effect. Thus, certain optical transitions which are allowed under equilibrium conditions are not accessible to the probe laser. It is shown that t...
Irradiating a ferromagnet with a femtosecond laser pulse is known to induce an ultrafast demagnetiza...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
In pump-probe experiments an intensive laser pulse creates non-equilibrium excited-electron distrib...
The role of pump helicity in laser-induced demagnetization of nickel thin films is investigated by m...
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 laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
The magneto-optical response of Fe and Ni during ultrafast demagnetization is studied experimentally...
This work deals with ultrafast demagnetization within few hundred femtoseconds after laser pulse irr...
It is generally believed that there are at least two ways to use an ultrafast laser pulse to demagne...
Irradiating a ferromagnet with a femtosecond laser pulse is known to induce an ultrafast demagnetiza...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
In pump-probe experiments an intensive laser pulse creates non-equilibrium excited-electron distrib...
The role of pump helicity in laser-induced demagnetization of nickel thin films is investigated by m...
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 laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
It has long been known that ferromagnets undergo a phase transition from ferromagnetic to paramagnet...
The magneto-optical response of Fe and Ni during ultrafast demagnetization is studied experimentally...
This work deals with ultrafast demagnetization within few hundred femtoseconds after laser pulse irr...
It is generally believed that there are at least two ways to use an ultrafast laser pulse to demagne...
Irradiating a ferromagnet with a femtosecond laser pulse is known to induce an ultrafast demagnetiza...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...