English

Two-dimensional mutual synchronization in spin Hall nano-oscillator arrays

Mesoscale and Nanoscale Physics 2018-12-27 v1 Applied Physics

Abstract

Spin Hall nano-oscillators (SHNOs) utilize pure spin currents to drive local regions of magnetic films and nanostructures into auto-oscillating precession. If such regions are placed in close proximity to each other they can interact and sometimes mutually synchronize, in pairs or in short linear chains. Here we demonstrate robust mutual synchronization of two-dimensional SHNO arrays ranging from 2 x 2 to 8 x 8 nano-constrictions, observed both electrically and using micro-Brillouin Light Scattering microscopy. The signal quality factor, Q=f/ΔfQ=f/\Delta f, increases linearly with number of mutually synchronized nano-constrictions (NN), reaching 170,000 in the largest arrays. While the microwave peak power first increases as N2N^2, it eventually levels off, indicating a non-zero relative phase shift between nano-constrictions. Our demonstration will enable the use of SHNO arrays in two-dimensional oscillator networks for high-quality microwave signal generation and neuromorphic computing.

Cite

@article{arxiv.1812.09630,
  title  = {Two-dimensional mutual synchronization in spin Hall nano-oscillator arrays},
  author = {Mohammad Zahedinejad and Ahmad A. Awad and Shreyas Muralidhar and Roman Khymyn and Himanshu Fulara and Hamid Mazraati and Mykola Dvornik and Johan Åkerman},
  journal= {arXiv preprint arXiv:1812.09630},
  year   = {2018}
}
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