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Energy-efficient generation of skyrmion phases in Co/Ni/Pt-based multilayers using Joule heating

Materials Science 2021-05-24 v2

Abstract

We have studied the effects of electrical current pulses on skyrmion formation in a series of Co/Ni/Pt-based multilayers. Transmission X-ray microscopy reveals that by applying electrical current pulses of duration and current density on the order of τ\tau=50 μ\mus and j=1.7x101^10^0 A/m2^2, respectively, in an applied magnetic field of μ\mu0_0Hz=50 mT, stripe-to-skyrmion transformations are attained. The skyrmions remain stable across a wide range of magnetic fields, including zero field. The skyrmions then remain stable across a wide range of magnetic fields, including zero field. We primarily attribute the transformation to current-induced Joule heating on the order of ~125 K. Reducing the magnetic moment and perpendicular anisotropy using thin rare-earth spacers dramatically reduces the pulse duration, current density, and magnetic field necessary to 25 μ\mus, 2.4x109^9 A/m2^2, and 27 mT, respectively. These findings show that energetic inputs allow for the formation of skyrmion phases in a broad class of materials and that material properties can be tuned to yield more energy-efficient access to skyrmion phases.

Keywords

Cite

@article{arxiv.2007.06008,
  title  = {Energy-efficient generation of skyrmion phases in Co/Ni/Pt-based multilayers using Joule heating},
  author = {Jeffrey A. Brock and Sergio A. Montoya and Mi-Young Im and Eric E. Fullerton},
  journal= {arXiv preprint arXiv:2007.06008},
  year   = {2021}
}

Comments

32 pages, 7 figures, 9 supplemental figures