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arXiv 2012-10-16 DOI 10.1103/PhysRevLett.109.157207 0 views

High temperature magnetic insulating phase in ultrathin La0.67Sr0.33MnO3 films

Boschker, Hans · Kautz, Jaap · Houwman, Evert P. · Siemons, Wolter · Huijben, Mark · Blank, Dave H. A. · Koster, Gertjan · Vailionis, Arturas · Rijnders, Guus

Original · EN

We present a study of the thickness dependence of magnetism and electrical conductivity in ultra thin La0.67Sr0.33MnO3 films grown on SrTiO3 (110) substrates. We found a critical thickness of 10 unit cells below which the conductivity of the films disappeared and simultaneously the Curie temperature (TC) increased, indicating a magnetic insulating phase at room temperature. These samples have a TC of about 560 K with a significant saturation magnetization of 1.2 +- 0.2 muB/Mn. The canted antiferromagnetic insulating phase in ultra thin films of n< 10 coincides with the occurrence of a higher symmetry structural phase with a different oxygen octahedra rotation pattern. Such a strain engineered phase is an interesting candidate for an insulating tunneling barrier in room temperature spin polarized tunneling devices.

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