Thermal effects in spin-torque assisted domain wall depinning

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Autor/in:
Erscheinungsjahr:
2012
Medientyp:
Text
Schlagworte:
  • Domain walls
  • Torque
  • Torque SOT
  • Magnetic Anisotropy
  • Magnetization
  • Magnetism
  • Domain walls
  • Torque
  • Torque SOT
  • Magnetic Anisotropy
  • Magnetization
  • Magnetism
Beschreibung:
  • We have investigated the magnetization reversal in V-shaped permalloy (Py) nanowires under high dc currents via anisotropic magnetoresistance (AMR) measurements. Utilizing a diamond substrate as heat sink, current densities up to 2×1012A/m2 can be applied. These high current densities enabled us to observe spin-torque assisted switching in thermal equilibrium, without the influence of transient effects. At high currents, the field driven magnetization reversal process is influenced by Joule heating, Oersted fields, and spin-torque effects. These contributions can be identified in our experiment due to their different symmetry properties under magnetization and current reversal. We obtain two important results when evaluating the spin-torque efficiency ε, which is proportional to the nonadiabaticity parameter β. First, we find different values for ε within the same sample, obtained with just a slight variation of the experimental parameters. Second, within the temperature range of 77 to 327 K, ε is found to be constant.
Lizenz:
  • info:eu-repo/semantics/restrictedAccess
Quellsystem:
Forschungsinformationssystem der UHH

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oai:www.edit.fis.uni-hamburg.de:publications/63198437-b270-4535-85dd-1d419aa3f838