Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic, and lattice degrees of freedom. A quantitative understanding of these dynamics must be based on a model that agrees with experimental results for all three subsystems. However, ultrafast dynamics of the lattice remain largely unexplored experimentally. Here we combine femtosecond electron diffraction experiments of the lattice dynamics with energy-conserving atomistic spin dynamics (ASD) simulations and ab initio calculations to study the intrinsic energy flow in the 3d ferromagnets cobalt (Co) and iron (Fe). The simulations yield a good description of experimental data, in particular an excellent description of our experimental results for the lattic...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Author name used in this publication: C.H. Woo2011-2012 > Academic research: refereed > Publication ...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic and lattic...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
Despite intense experimental effort, theoretical proposals and modeling approaches, a lack of consen...
Many properties in solids are determined by interactions between electronic, magnetic, and phononic ...
The local spin-density approximation (LSDA) is known to describe poorly the electronic structure of ...
Ultrafast laser excitation of ferromagnetic metals gives rise to correlated, highly non-equilibrium ...
In recent years, there has been an intense interest in understanding the microscopic mechanism of la...
In recent years, there has been an intense interest in understanding the microscopic mechanism of la...
In this thesis, I investigate the ultrafast magnetization dynamics in 3d ferromagnets and their allo...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
Even twenty years after the discovery of ultrafast demagnetization of ferromagnetic materials induce...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Author name used in this publication: C.H. Woo2011-2012 > Academic research: refereed > Publication ...
Ultrafast magnetization dynamics are governed by energy flow between electronic, magnetic and lattic...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
The ultrafast dynamics of magnetic order in a ferromagnet are governed by the interplay between elec...
Despite intense experimental effort, theoretical proposals and modeling approaches, a lack of consen...
Many properties in solids are determined by interactions between electronic, magnetic, and phononic ...
The local spin-density approximation (LSDA) is known to describe poorly the electronic structure of ...
Ultrafast laser excitation of ferromagnetic metals gives rise to correlated, highly non-equilibrium ...
In recent years, there has been an intense interest in understanding the microscopic mechanism of la...
In recent years, there has been an intense interest in understanding the microscopic mechanism of la...
In this thesis, I investigate the ultrafast magnetization dynamics in 3d ferromagnets and their allo...
We report a computational theoretical investigation of electron spin-flip scattering induced by the ...
Even twenty years after the discovery of ultrafast demagnetization of ferromagnetic materials induce...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Multireservoir models are widely used for modeling and interpreting ultrafast magnetization dynamics...
Author name used in this publication: C.H. Woo2011-2012 > Academic research: refereed > Publication ...