The efficient generation, manipulation and detection of magnetic skyrmions are important for the development of future spintronic devices. One approach is to use electric-current-induced spin torques. Recently, thermally induced skyrmion motion has also been observed, but wider experimental evidence and its capabilities remain limited. Here we report the thermal generation, manipulation and thermoelectric detection of nanoscale skyrmions in microstructured metallic multilayers integrated with on-chip heaters. The local application of heat can facilitate a domain morphological transition and the formation of skyrmions at the device edge, where a low energy barrier exists. We observe the unidirectional diffusion of skyrmions from hot regions ...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
International audienceWe experimentally study the thermoelectrical signature of individual skyrmions...
Magnetic skyrmions in thin films can be efficiently displaced with high speed by using spin-transfer...
The efficient generation, manipulation and detection of magnetic skyrmions are important for the dev...
The efficient generation, manipulation and detection of magnetic skyrmions are important for the dev...
Magnetic skyrmions in thin films can be efficiently displaced with high speed by using spin-transfer...
Defense is held on 22.9.2021 12:00 – 16:00 (Zoom), https://aalto.zoom.us/j/4249624310Digital data...
Magnetic skyrmions promise breakthroughs in future memory and computing devices due to their inheren...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
The use of non-trivial spin textures such as domain walls and skyrmions holds promise in future appl...
This brief reviews current research on magnetic skyrmions, with emphasis on formation mechanisms, ob...
International audienceMagnetic skyrmions are nanoscale windings of the spin configuration that hold ...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
International audienceWe experimentally study the thermoelectrical signature of individual skyrmions...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
International audienceWe experimentally study the thermoelectrical signature of individual skyrmions...
Magnetic skyrmions in thin films can be efficiently displaced with high speed by using spin-transfer...
The efficient generation, manipulation and detection of magnetic skyrmions are important for the dev...
The efficient generation, manipulation and detection of magnetic skyrmions are important for the dev...
Magnetic skyrmions in thin films can be efficiently displaced with high speed by using spin-transfer...
Defense is held on 22.9.2021 12:00 – 16:00 (Zoom), https://aalto.zoom.us/j/4249624310Digital data...
Magnetic skyrmions promise breakthroughs in future memory and computing devices due to their inheren...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
The use of non-trivial spin textures such as domain walls and skyrmions holds promise in future appl...
This brief reviews current research on magnetic skyrmions, with emphasis on formation mechanisms, ob...
International audienceMagnetic skyrmions are nanoscale windings of the spin configuration that hold ...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
International audienceWe experimentally study the thermoelectrical signature of individual skyrmions...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
International audienceWe experimentally study the thermoelectrical signature of individual skyrmions...
Magnetic skyrmions in thin films can be efficiently displaced with high speed by using spin-transfer...