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M

M. R. Ibarra

Researcher at University of Zaragoza

Publications -  460
Citations -  14896

M. R. Ibarra is an academic researcher from University of Zaragoza. The author has contributed to research in topics: Magnetization & Magnetic anisotropy. The author has an hindex of 60, co-authored 448 publications receiving 13724 citations. Previous affiliations of M. R. Ibarra include Spanish National Research Council & University of Southampton.

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Evidence for magnetic polarons in the magnetoresistive perovskites

TL;DR: In this article, a combination of volume thermal expansion (with and without an applied field), magnetic susceptibility and small-angle neutron scattering measurements was used to detect magnetic polarons above the ferromagnetic ordering temperature, Tc.
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Double perovskites with ferromagnetism above room temperature

TL;DR: In this article, the structural, magnetic and transport properties of double perovskites with ferromagnetism above room temperature are discussed, and the impact of these materials for spin electronics in the light of their high spin polarization at the Fermi level and metallicity.
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Nanoparticles as Smart Treatment-delivery Systems in Plants: Assessment of Different Techniques of Microscopy for their Visualization in Plant Tissues

TL;DR: In this article, a number of tools for the detection and analysis of core-shell magnetic nanoparticles introduced into plants and their concentration in selected plant tissues by magnetic field gradients are presented.
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Influence of oxygen content on the structural, magnetotransport, and magnetic properties of LaMnO 3 + δ

TL;DR: A systematic study of the effect of oxygen content on the structural, magnetotransport, and magnetic properties has been undertaken on a series of samples, with the results reported in this paper.
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Magnetic-field-induced structural phase transition in Gd 5 ( S i 1.8 Ge 2.2 )

TL;DR: In this article, the giant magnetocaloric effect was shown to be associated with a field-induced first-order structural transition from a monoclinic (paramagnetic) to a Pnma orthorhombic (ferromagnetic) structure.