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CMR manganites: physics, thin films and devices

Journal of Physics D Applied Physics · 2003 · Vol. 36(8) · pp. R127–R150
A-M Haghiri-GosnetJ-P. Renard

Abstract

The manganese oxides of general formula RE1−xMxMnO3 (RE = rare earth, M = Ca, Sr, Ba, Pb) have remarkable interrelated structural, magnetic and transport properties induced by the mixed valence (3+–4+) of the Mn ions. In particular, they exhibit very large negative magnetoresistance, called colossal magnetoresistance (CMR), in the vicinity of metal–insulator transition for certain compositions. In this review paper, we summarize the most important features of the physics of the CMR manganites. The growth techniques for manganese oxide thin films, which are the basic material for potential applications, are reviewed and their structure and morphology examined in relation to growth parameters. The effects of epitaxial strains on the physical properties are discussed. Early works on superlattices and devices are presented.

Magnetic and transport properties of perovskites and related materialsElectronic and Structural Properties of OxidesMultiferroics and related materialsColossal magnetoresistanceMagnetoresistanceSuperlatticeManganiteCondensed matter physicsThin filmValence (chemistry)ManganeseManganese oxideMaterials science
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References
Magnetoresistance measurements on the magnetic semiconductor Nd0.5Pb0.5MnO3
Physica B Condensed Matter · 1989 · 809 citations
Colossal magnetoresistive manganites
Journal of Magnetism and Magnetic Materials · 1999 · 1,107 citations
Electron beam lithography: resolution limits and applications
Applied Surface Science · 2000 · 1,109 citations
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