The local spin-density approximation (LSDA) is known to describe poorly the electronic structure of 3d transition metals, yet most density-functional-based ab-initio studies of ultra-fast demagnetization rely on it. One way to account for Coulomb correlations among the localized d electrons and go beyond LSDA is to include the effective correlation energy (or Hubbard) U. By doing so, we show here that electronic correlations lead to sizable changes of the laser-induced demagnetization of iron, cobalt, and nickel. We study how the various laser parameters, such as pulse duration or intensity, change the magnetization dynamics. It turns out that the total laser fluence is not suitable to quantify how much a laser pulse demagnetizes a material...
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 local spin-density approximation (LSDA) is known to describe poorly the electronic structure of ...
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...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic, and latti...
Even twenty years after the discovery of ultrafast demagnetization of ferromagnetic materials induce...
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 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 local spin-density approximation (LSDA) is known to describe poorly the electronic structure of ...
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...
Pulsed-laser-induced quenching of ferromagnetic order has intrigued researchers since pioneering wor...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic, and latti...
Even twenty years after the discovery of ultrafast demagnetization of ferromagnetic materials induce...
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 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...