arXiv · 1103.4248
Inductive determination of the optimum tunnel barrier thickness in magnetic tunnelling junction stacks for spin torque memory applications
Abstract
We use pulsed inductive microwave magnetometry to study the precessional magnetization dynamics of the free layer in CoFeB/MgO/CoFeB based magnetic tunnelling junction stacks with varying MgO barrier thickness. From the field dependence of the precession frequency we are able to derive the uniaxial anisotropy energy and the exchange coupling between the free and the pinned layer. Furthermore the field dependence of the effective damping parameter is derived. Below a certain threshold barrier thickness we observe an increased effective damping for antiparallel orientation of free and pinned layer which would inhibit reversible low current density spin torque magnetization reversal. Such inductive measurements, in combination with wafer probe station based magneto transport experiments, allow a fast determination of the optimum tunnel barrier thickness range for spin torque memory applications in a lithography free process.
Explore related subjects
Keep this discovery
Santiago Serrano-Guisan, Witold Skowronski, Jerzy Wrona, Niklas Liebing, Maciej Czapkiewicz, Tomasz Stobiecki, Günter Reiss, Hans-Werner Schumacher. 2011-03-22. Inductive determination of the optimum tunnel barrier thickness in magnetic tunnelling junction stacks for spin torque memory applications. https://doi.org/10.1063/1.3610948
Cite the original work for its findings. Save a collection to share your selection of sources.