Spin caloritronic nano-oscillator

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Abstract

Energy loss due to ohmic heating is a major bottleneck limiting down-scaling and speed of nano-electronic devices, and harvesting ohmic heat for signal processing is a major challenge in modern electronics. Here, we demonstrate that thermal gradients arising from ohmic heating can be utilized for excitation of coherent auto-oscillations of magnetization and for generation of tunable microwave signals. The heat-driven dynamics is observed in Y3Fe5O12/Pt bilayer nanowires where ohmic heating of the Pt layer results in injection of pure spin current into the Y3Fe5O12 layer. This leads to excitation of auto-oscillations of the Y3Fe5O12 magnetization and generation of coherent microwave radiation. Our work paves the way towards spin caloritronic devices for microwave and magnonic applications.

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Safranski, C., Barsukov, I., Lee, H. K., Schneider, T., Jara, A. A., Smith, A., … Krivorotov, I. N. (2017). Spin caloritronic nano-oscillator. Nature Communications, 8(1). https://doi.org/10.1038/s41467-017-00184-5

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