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Journal ArticleDOI

Colossal magnetoresistance of ferromagnetic manganites: Structural tuning and mechanisms.

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TLDR
The amplitude $\ensuremath{\rho}(T,H)$ and temperature ${T}_{M}$ and CMR are found to be controlled by the radius of the lanthanide $({L}^{3+})$ which modifies the bending of the Mn-O-Mn bond.
Abstract
The amplitude $\ensuremath{\Delta}\ensuremath{\rho}(T,H)/\ensuremath{\rho}$ and temperature ${T}_{M}$, where the colossal magnetoresistance (CMR) response of ${L}_{1\ensuremath{-}x}{\mathrm{Ca}}_{x}{\mathrm{MnO}}_{3}$ manganites are maximum, are found to be controlled by the radius of the lanthanide $({L}^{3+})$ which modifies the bending of the Mn-O-Mn bond. Increasing the bond distortion lowers ${T}_{M}$ and enhances $\ensuremath{\Delta}\ensuremath{\rho}(T,H)/\ensuremath{\rho}$. Enhanced CMR arises from (1) a shift to lower temperatures of ${T}_{M}$, (2) a reduced mobility of the doping holes, and (3) an increase of the coupling between itinerant and localized electrons. The resistivity $\ensuremath{\rho}\left(H\right)$ follows an $\ensuremath{\approx}{\mathrm{BM}}^{2}\left(H\right)$ law and the parameter $B$ is also tuned by the Mn-O-Mn bond angle. The narrowing of the electronic bandwidth is the fundamental parameter controlling the observed CMR.

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Journal ArticleDOI

Magnetoresistive effect in RCu3Mn4O12 perovskite-like oxides

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Book ChapterDOI

Influence of Microstructure and Magnetic State on Low Temperature Magnetoresistance Properties of Bulk LA0.7-xYxCA0.3MnO3

TL;DR: In this paper, the influence of Y doping on the magnetic properties of La0.7.3MnO3 compounds was investigated by means of transport, susceptibility and magnetisation measurements.
Journal ArticleDOI

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TL;DR: In this article , structural and magnetic properties of polycrystalline LaFe0.5Mn 0.5O3 have been investigated and a systematic investigation of magnetic behavior revealed the antiferromagnetic ordering at 276 K and Griffiths Phase-like behavior in the temperature range of 276 K to 314 K, confirmed by the power-law susceptibility exponent(λ).
Book ChapterDOI

Unidirectional Anisotropy in Manganite Based Ferromagnetic-Antiferromagnetic Multilayers

TL;DR: In mixed valence manganites, a large negative magnetoresistance (MR) can be obtained due to a metal-insulator transition at the ferromagnetic Curie point.
Journal ArticleDOI

Variable Range Hopping (VRH) Model in Manganese Oxides

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