The parallel or antiparallel arrangement of electron spins plays a pivotal role in determining the properties of a physical system. To meet the demands for innovative technological solutions, extensive efforts have been dedicated to exploring effective methods for controlling and manipulating this arrangement [1]. Among various techniques, ultrashort laser pulses have emerged as an exceptionally efficient tool to influence magnetic order. Ultrafast suppression of the magnetic order [2,3], all-optical magnetization switching [4, 5, 6, 7], and light-induced magnetic phase transitions [8] are just a few notable examples. However, the transient nature of light-induced changes in the magnetic state has been a significant limitation, hindering th...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present atomistic spin dynamics modeling of thermally induced magnetization switching (TIMS) of d...
We present atomistic spin dynamics modeling of thermally induced magnetization switching (TIMS) of d...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Manipulating magnetic skyrmions by means of a femtosecond (fs) laser pulse has attracted great inter...
Manipulating magnetic skyrmions by means of a femtosecond (fs) laser pulse has attracted great inter...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
We present atomistic spin dynamics modeling of thermally induced magnetization switching (TIMS) of d...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present atomistic spin dynamics modeling of thermally induced magnetization switching (TIMS) of d...
We present atomistic spin dynamics modeling of thermally induced magnetization switching (TIMS) of d...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Manipulating magnetic skyrmions by means of a femtosecond (fs) laser pulse has attracted great inter...
Manipulating magnetic skyrmions by means of a femtosecond (fs) laser pulse has attracted great inter...
Controlling magnetic order on ultrashort timescales is crucial for engineering the next-generation m...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
The vision of using light to manipulate electronic and spin excitations in materials on their fundam...
We present atomistic spin dynamics modeling of thermally induced magnetization switching (TIMS) of d...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...
We present evidence for an ultrafast optically induced ferromagnetic alignment of antiferromagnetic ...