The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between electronic, magnetic and lattice degrees of freedom. In order to obtain a microscopic understanding of ultrafast demagnetization, information on the response of all three subsystems is required. A consistent description of demagnetization and microscopic energy flow, however, is still missing. Here, we combine a femtosecond electron diffraction study of the ultrafast lattice response of nickel to laser excitation with ab initio calculations of the electron-phonon interaction and energy conserving atomistic spin dynamics simulations. Our model is in agreement with the observed lattice dynamics and previously reported electron and magnetization dyn...
The laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic and lattic...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic, and latti...
Many properties in solids are determined by interactions between electronic, magnetic, and phononic ...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Despite intense experimental effort, theoretical proposals and modeling approaches, a lack of consen...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
The laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic and lattic...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic, and latti...
Many properties in solids are determined by interactions between electronic, magnetic, and phononic ...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Despite intense experimental effort, theoretical proposals and modeling approaches, a lack of consen...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
The laser-induced demagnetization of a ferromagnet is caused by the temperature of the electron gas ...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...
We present a microscopic model that explains quenching of the magnetization of ferromagnetic transit...