Stoner and Heisenberg excitations in magnetic materials are inherently different. The first involves an effective reduction of the exchange splitting, whereas the second comprises excitation of spin waves. In this work, we test the impact of these two excitations in the hybrid Stoner-Heisenberg system of FePd. We present a microscopic picture of ultrafast demagnetization dynamics in this alloy, which represents both components of strong local exchange splitting in Fe and induced polarization in Pd. We identify the spin-orbit coupling (SOC) and the optical intersite spin transfer (OISTR) as the two dominant factors for demagnetization at ultrashort timescales. Remarkably, the drastic difference in the origin of the magnetic moment of the Fe ...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
Ferromagnetic metal alloys are today commonly used in spintronic and magnetic data storage devices. ...
The vision to manipulate and control magnetism with light is driven on the one hand by fundamental q...
Stoner and Heisenberg excitations in magnetic materials are inherently different. The first involves...
Stoner and Heisenberg excitations in magnetic materials are inherently different. The first involves...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
The vision to manipulate and control magnetism with light is driven on the one hand by fundamental q...
The study of magnetism has long been an active area of interest for the scientific research, while a...
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-stat...
In this thesis, I investigate the ultrafast magnetization dynamics in 3d ferromagnets and their allo...
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-stat...
Understanding how the electronic band structure of a ferromagnetic material is modified during laser...
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-stat...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
Ferromagnetic metal alloys are today commonly used in spintronic and magnetic data storage devices. ...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
Ferromagnetic metal alloys are today commonly used in spintronic and magnetic data storage devices. ...
The vision to manipulate and control magnetism with light is driven on the one hand by fundamental q...
Stoner and Heisenberg excitations in magnetic materials are inherently different. The first involves...
Stoner and Heisenberg excitations in magnetic materials are inherently different. The first involves...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
The vision to manipulate and control magnetism with light is driven on the one hand by fundamental q...
The study of magnetism has long been an active area of interest for the scientific research, while a...
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-stat...
In this thesis, I investigate the ultrafast magnetization dynamics in 3d ferromagnets and their allo...
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-stat...
Understanding how the electronic band structure of a ferromagnetic material is modified during laser...
The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-stat...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
Ferromagnetic metal alloys are today commonly used in spintronic and magnetic data storage devices. ...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
Ferromagnetic metal alloys are today commonly used in spintronic and magnetic data storage devices. ...
The vision to manipulate and control magnetism with light is driven on the one hand by fundamental q...