Direct observation and imaging of a spin-wave soliton with p-like symmetry
Abstract
Spin waves, the collective excitations of spins, can emerge as nonlinear solitons at the nanoscale when excited by an electrical current from a nanocontact. These solitons are expected to have essentially cylindrical symmetry (that is, s-like), but no direct experimental observation exists to confirm this picture. Using a high-sensitivity time-resolved magnetic X-ray microscopy with 50 ps temporal resolution and 35 nm spatial resolution, we are able to create a real-space spin-wave movie and observe the emergence of a localized soliton with a nodal line, that is, with p-like symmetry. Micromagnetic simulations explain the measurements and reveal that the symmetry of the soliton can be controlled by magnetic fields. Our results broaden the understanding of spin-wave dynamics at the nanoscale, with implications for the design of magnetic nanodevices.
- Publication:
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Nature Communications
- Pub Date:
- November 2015
- DOI:
- 10.1038/ncomms9889
- arXiv:
- arXiv:1504.00144
- Bibcode:
- 2015NatCo...6.8889B
- Keywords:
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- Condensed Matter - Mesoscale and Nanoscale Physics;
- Condensed Matter - Materials Science;
- Condensed Matter - Other Condensed Matter
- E-Print:
- Nature Communications 6, Article number: 8889 (2015)