The antiferromagnetic order in heterostructures of NiO/Pt thin films can be modified by optical pulses. After the irradiation with laser light, the optically induced creation of antiferromagnetic domains can be observed by imaging the created domain structure utilizing the X-ray magnetic linear dichroism effect. The effect of different laser polarizations on the domain formation can be studied and used to identify a polarization-independent creation of 180° domain walls and domains with 180° different Néel vector orientation. By varying the irradiation parameters, the switching mechanism can be determined to be thermally induced. This study demonstrates experimentally the possibility to optically create antiferromagnetic domains, an importa...
We present a microscopic investigation of how the magnetic domain structure in ultrathin films chan...
Using X-ray Magnetic Linear Dichroism (XMLD) measurement, we investigate the antiferromagnetic (AFM)...
Title: Investigation of spin structure and dynamics in magnetically ordered thin films Author: Tomáš...
Recent demonstrations of electrical detection and manipulation of antiferromagnets (AFMs) have opene...
Understanding the electrical manipulation of the antiferromagnetic order is a crucial aspect to enab...
The domain structure of antiferromagnetic (AFM) NiO(100) has been investigated by nonmagnetic x-ray ...
As electrical control of Néel order opens the door to reliable antiferromagnetic spintronic devices,...
All-optical switching (AOS) of magnetization in ferri- and ferromagnetic thin films has in recent ye...
Magnetic domain walls can be manipulated by thermal gradients. A local thermal gradient can be gener...
We find that Ni L-2 edge x-ray magnetic linear dichroism is fully reversed for NiO(001) films on mat...
All-optical switching (AOS) of magnetization has been attracting an increasing attention due to the ...
The effects originating from the proximity between the ferromagnetic and the antiferromagnetic phase...
Antiferromagnetic materials attract a great amount of attention recently for promising antiferromagn...
We report thickness dependence of magnetic linear dichroism (MLD) of in situ grown NiO(001) films on...
We demonstrate how shape-induced strain can be used to control antiferromagnetic order in NiO/Pt thi...
We present a microscopic investigation of how the magnetic domain structure in ultrathin films chan...
Using X-ray Magnetic Linear Dichroism (XMLD) measurement, we investigate the antiferromagnetic (AFM)...
Title: Investigation of spin structure and dynamics in magnetically ordered thin films Author: Tomáš...
Recent demonstrations of electrical detection and manipulation of antiferromagnets (AFMs) have opene...
Understanding the electrical manipulation of the antiferromagnetic order is a crucial aspect to enab...
The domain structure of antiferromagnetic (AFM) NiO(100) has been investigated by nonmagnetic x-ray ...
As electrical control of Néel order opens the door to reliable antiferromagnetic spintronic devices,...
All-optical switching (AOS) of magnetization in ferri- and ferromagnetic thin films has in recent ye...
Magnetic domain walls can be manipulated by thermal gradients. A local thermal gradient can be gener...
We find that Ni L-2 edge x-ray magnetic linear dichroism is fully reversed for NiO(001) films on mat...
All-optical switching (AOS) of magnetization has been attracting an increasing attention due to the ...
The effects originating from the proximity between the ferromagnetic and the antiferromagnetic phase...
Antiferromagnetic materials attract a great amount of attention recently for promising antiferromagn...
We report thickness dependence of magnetic linear dichroism (MLD) of in situ grown NiO(001) films on...
We demonstrate how shape-induced strain can be used to control antiferromagnetic order in NiO/Pt thi...
We present a microscopic investigation of how the magnetic domain structure in ultrathin films chan...
Using X-ray Magnetic Linear Dichroism (XMLD) measurement, we investigate the antiferromagnetic (AFM)...
Title: Investigation of spin structure and dynamics in magnetically ordered thin films Author: Tomáš...