In order to explain a number of recent experimental observations of laser-induced femtosecond demagnetization in the large fluence limit, we discuss the consequences of a recently proposed nonlocal approach. A microscopic description of spin flip scattering is implemented in an effective three temperature model, including electronic heat diffusion. Effects of finite film thickness on the demagnetization transients are discussed. Our results show a clear saturation of the ultrafast demagnetization, in excellent agreement with experimental observations
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We introduce a microscopic model to describe the ultrafast response of magnetic materials with two s...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We experimentally investigate to what extent superdiffusive spin transport contributes to the ultraf...
We introduce a microscopic model to describe the ultrafast response of magnetic materials with two s...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
In order to explain a number of recent experimental observations of laser-induced femtosecond demagn...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We investigate a recent controversy in ultrafast magnetization dynamics by comparing the demagnetiza...
We introduce a microscopic model to describe the ultrafast response of magnetic materials with two s...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We experimentally investigate to what extent superdiffusive spin transport contributes to the ultraf...
We introduce a microscopic model to describe the ultrafast response of magnetic materials with two s...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...
We report on recent experiments addressing the interplay between magnetic ordering and spin/heat tra...