arXiv · 1703.06989
Magnetic skyrmions and skyrmion clusters in the helical phase of Cu$_2$OSeO$_3$
Abstract
Skyrmions are nanometric spin whirls that can be stabilized in magnets lacking inversion symmetry. The properties of isolated skyrmions embedded in a ferromagnetic background have been intensively studied. We show that single skyrmions and clusters of skyrmions can also form in the helical phase and investigate theoretically their energetics and dynamics. The helical background provides natural one-dimensional channels along which a skyrmion can move rapidly. In contrast to skyrmions in ferromagnets, the skymion-skyrmion interaction has a strong attractive component and thus skyrmions tend to form clusters with characteristic shapes. These clusters are directly observed in transmission electron microscopy measurements in thin films of Cu$_2$OSeO$_3$. Topological quantization, high mobility and the confinement of skyrmions in channels provided by the helical background may be useful for future spintronics devices.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jan Müller, Jayaraman Rajeswari, Ping Huang, Yoshie Murooka, Henrik M. Rønnow, Fabrizio Carbone, Achim Rosch. 2017-09-29. Magnetic skyrmions and skyrmion clusters in the helical phase of Cu$_2$OSeO$_3$. https://doi.org/10.1103/physrevlett.119.137201
Cite the original work for its findings. Save a collection to share your selection of sources.