Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental challenge of modern magnetism having far reaching implications for magnetic recording industry. Exchange interaction is the strongest force in magnetism, being responsible for ferromagnetic or antiferromagnetic spin order. How do spins react after being optically perturbed on an ultrashort timescales pertinent to the characteristic time of the exchange interaction? Here we demonstrate that femtosecond measurements of X-ray magnetic circular dichroism provide revolutionary new insights into the problem of ultrafast magnetism. In particular, we show that upon femtosecond optical excitation the ultrafast spin reversal of Gd(FeCo) - a material with an...
Item does not contain fulltextWe employ time-resolved X-ray magnetic circular dichroism with fs time...
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1-x at femtoseco...
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1− at femtosecon...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Ferromagnetic or antiferromagnetic spin ordering is governed by the exchange interaction, the strong...
Ferromagnetic or antiferromagnetic spin ordering is governed by the exchange interaction, the strong...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
We employ time-resolved X-ray magnetic circular dichroism with fs time resolution to investigate the...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials that equi...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials1, 2, 3, 4...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
Item does not contain fulltextWe employ time-resolved X-ray magnetic circular dichroism with fs time...
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1-x at femtoseco...
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1− at femtosecon...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Revealing the ultimate speed limit at which magnetic order can be controlled, is a fundamental chall...
Ferromagnetic or antiferromagnetic spin ordering is governed by the exchange interaction, the strong...
Ferromagnetic or antiferromagnetic spin ordering is governed by the exchange interaction, the strong...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
We employ time-resolved X-ray magnetic circular dichroism with fs time resolution to investigate the...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials that equi...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials1, 2, 3, 4...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
Item does not contain fulltextWe employ time-resolved X-ray magnetic circular dichroism with fs time...
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1-x at femtoseco...
Using an ultrashort laser pulse, we explore ab initio the spin dynamics of Gdx(FeCo)1− at femtosecon...