We propose and numerically simulate a spintronic device layout consisting of a nanocontact on top of an extended Co/Pt bilayer. The interfacial Dzyaloshinskii-Moriya interaction in such bilayer systems can lead to the possible existence of metastable skyrmions. A small dc current injected through the nanocontact enables the manipulation of the size as well as the annihilation of an initially present skyrmion, while ps-long current pulses allow for the controlled nucleation of single skyrmions underneath the nanocontact. The results are obtained from micromagnetic simulations and can be potentially used for future magnetic storage implementations
Magnetic skyrmions are topological spin textures that hold great promise as nanoscale information ca...
Magnetic skyrmions might be used for building next-generation nanomagnetic and spintronic devices, a...
Skyrmion racetrack memory has a lot of potential in future non-volatile solid state devices. By appl...
We propose and numerically simulate a spintronic device layout consisting of a nanocontact on top of...
Magnetic skyrmions are topological solitons promising for applications as encoders for digital infor...
Magnetic skyrmions are particle‐like deformations in a magnetic texture. They have great potential a...
Topologically nontrivial spin textures have recently been investigated for spintronic applications. ...
Magnetic skyrmions are stable spin textures with quasi-particle behavior and attract significant int...
We show that magnetic skyrmions can be stabilised at room temperature in continuous [Ir/Co/Pt]5 mult...
Magnetic skyrmions are particle‐like deformations in a magnetic texture. They have great potential a...
We demonstrate the controlled generation and annihilation of (anti)skyrmions with tunable chirality ...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
Skyrmions are topologically protected quasiparticles in the form of stable spin textures in a magnet...
Magnetic skyrmions are particle-like nanoscale magnetic structures currently surging in interest in ...
International audienceNanoscale magnetic skyrmions are considered as potential information carriers ...
Magnetic skyrmions are topological spin textures that hold great promise as nanoscale information ca...
Magnetic skyrmions might be used for building next-generation nanomagnetic and spintronic devices, a...
Skyrmion racetrack memory has a lot of potential in future non-volatile solid state devices. By appl...
We propose and numerically simulate a spintronic device layout consisting of a nanocontact on top of...
Magnetic skyrmions are topological solitons promising for applications as encoders for digital infor...
Magnetic skyrmions are particle‐like deformations in a magnetic texture. They have great potential a...
Topologically nontrivial spin textures have recently been investigated for spintronic applications. ...
Magnetic skyrmions are stable spin textures with quasi-particle behavior and attract significant int...
We show that magnetic skyrmions can be stabilised at room temperature in continuous [Ir/Co/Pt]5 mult...
Magnetic skyrmions are particle‐like deformations in a magnetic texture. They have great potential a...
We demonstrate the controlled generation and annihilation of (anti)skyrmions with tunable chirality ...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
Skyrmions are topologically protected quasiparticles in the form of stable spin textures in a magnet...
Magnetic skyrmions are particle-like nanoscale magnetic structures currently surging in interest in ...
International audienceNanoscale magnetic skyrmions are considered as potential information carriers ...
Magnetic skyrmions are topological spin textures that hold great promise as nanoscale information ca...
Magnetic skyrmions might be used for building next-generation nanomagnetic and spintronic devices, a...
Skyrmion racetrack memory has a lot of potential in future non-volatile solid state devices. By appl...