arXiv · 0810.3576
High domain wall velocity at zero magnetic field induced by low current densities in spin-valve nanostripes
Abstract
Current-induced magnetic domain wall motion at zero magnetic field is observed in the permalloy layer of a spin-valve-based nanostripe using photoemission electron microscopy. The domain wall movement is hampered by pinning sites, but in between them high domain wall velocities (exceeding 150 m/s) are obtained for current densities well below $10^{12} \unit{A/m^2}$, suggesting that these trilayer systems are promising for applications in domain wall devices in case of well controlled pinning positions. Vertical spin currents in these structures provide a potential explanation for the increase in domain wall velocity at low current densities.
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Stefania Pizzini, Vojtech Uhlir, Jan Vogel, Nicolas Rougemaille, Sana Laribi, Vincent Cros, Erika Jimenez, Julio Camarero, Carsten Tieg, Edgar Bonet, Marlio Bonfim, Richard Mattana, Cyrile Deranlot, Frédric Petroff, Christian Ulysse, Giancarlo Faini, Albert Fert. 2009-01-30. High domain wall velocity at zero magnetic field induced by low current densities in spin-valve nanostripes. https://doi.org/10.1143/apex.2.023003
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