arXiv · 1711.02285
Selective control of vortex polarities by microwave field in two robustly synchronized spin-torque nano-oscillators
Abstract
Manipulating operation states of coupled spin-torque nano-oscillators (STNOs), including their synchronization, is essential for applications such as complex oscillator networks. In this work we experimentally demonstrate selective control of two coupled vortex STNOs through microwave-assisted switching of their vortex core polarities. First, the two oscillators are shown to synchronize due to dipolar interaction in a broad frequency range tuned by external biasing field. Coherent output is demonstrated along with strong linewidth reduction. Then, we show individual vortex polarity control of each oscillator, which leads to synchronization/desynchronization due to accompanied frequency shift. Our methods can be easily extended to multiple-element coupled oscillator networks.
Explore related subjects
Keep this discovery
Yi Li, Xavier de Milly, Olivier Klein, Vincent Cros, Julie Grollier, Grégoire de Loubens. 2017-11-07. Selective control of vortex polarities by microwave field in two robustly synchronized spin-torque nano-oscillators. https://doi.org/10.1063/1.5012768
Cite the original work for its findings. Save a collection to share your selection of sources.