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Low-frequency noise and inelastic tunneling spectroscopy in Fe(1 1 0)/MgO(1 1 1)/Fe(1 1 0) epitaxial magnetic tunnel junctions
Authors:R Guerrero  FG Aliev  R Villar  J Hauch  M Fraune  G Güntherodt  K Rott  H Brückl  G Reiss
Institution:1. Dpto. FisicaMateria Condensada, C-III, Universidad Autonoma de Madrid, 28049 Madrid, Spian;2. II. Phys. Institut, RWTH Aachen, D-52074 Aachen, Germany;3. Facultät für Physik, Universiteit Bielefeld, 33501 Bielefeld, Germany
Abstract:We report on tunnelling magnetoresistance (TMR), current–voltage (IV) characteristics and low-frequency noise in epitaxially grown Fe(1 1 0)/MgO(1 1 1)/Fe(1 1 0) magnetic tunnel junctions (MTJs) with dimensions from 2×2 to 20×20 μm2. The evaluated MgO energy barrier (0.50±0.08 eV), the barrier width (13.1±0.5 Å) as well as the resistance times area product (7±1 MΩ μm2) show relatively small variation, confirming a high quality epitaxy and uniformity of all MTJs studied. At low temperatures (T<10 K) inelastic electron tunneling spectroscopy (IETS) shows anomalies related to phonons (symmetric structures below 100 meV) and asymmetric features above 200 meV. We explain the asymmetric features in IETS as due to generation of electron standing waves in one of the Fe electrodes. The noise power, though exhibiting a large variation, was observed to be roughly anti-correlated with the TMR. Surprisingly, for the largest junctions we observed a strong enhancement of the normalized low-frequency noise in the antiparallel magnetic configuration. This behavior could be related to the influence of magnetostriction on the characteristics of the insulating barrier through changes in local barrier defects structure.
Keywords:72  25  &minus  b  72  70  +m  73  21  &minus  b
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