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Joule Heating and Spin-Transfer Torque Investigated on the Atomic Scale Using a Spin-Polarized Scanning Tunneling Microscope

S. Krause, G. Herzog, A. Schlenhoff, A. Sonntag, and R. Wiesendanger
Phys. Rev. Lett. 107, 186601 – Published 27 October 2011

Abstract

The influence of a high spin-polarized tunnel current onto the switching behavior of a superparamagnetic nanoisland on a nonmagnetic substrate is investigated by means of spin-polarized scanning tunneling microscopy. A detailed lifetime analysis allows for a quantification of the effective temperature rise of the nanoisland and the modification of the activation energy barrier for magnetization reversal, thereby using the nanoisland as a local thermometer and spin-transfer torque analyzer. Both the Joule heating and spin-transfer torque are found to scale linearly with the tunnel current. The results are compared to experiments performed on lithographically fabricated magneto-tunnel junctions, revealing a very high spin-transfer torque switching efficiency in our experiments.

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  • Received 11 April 2011

DOI:https://doi.org/10.1103/PhysRevLett.107.186601

© 2011 American Physical Society

Authors & Affiliations

S. Krause*, G. Herzog, A. Schlenhoff, A. Sonntag, and R. Wiesendanger

  • Institute of Applied Physics and Microstructure Research Center, University of Hamburg, Jungiusstr. 11, 20355 Hamburg, Germany

  • *skrause@physnet.uni-hamburg.de

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Issue

Vol. 107, Iss. 18 — 28 October 2011

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