Percolative transition on ferromagnetic insulator manganites: Uncorrelated to correlated polaron clusters

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Abstract

We report an atomic-scale study on the ferromagnetic insulator manganite LaMnO3.12 using γ-γ perturbed angular correlation spectroscopy. Data analysis reveals a nanoscopic transition from an undistorted to a Jahn-Teller (JT) distorted local environment upon cooling. The percolation thresholds of the two local environments enclose a macroscopic structural transition (rhombohedral-orthorhombic). Two distinct regimes of JT distortions were found: a high-temperature regime where uncorrelated polaron clusters with severe distortions of the Mn3+ O6 octahedra survive up to T800 K and a low-temperature regime where correlated regions have a weaker JT-distorted symmetry. © 2006 The American Physical Society.

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Lopes, A. M. L., Araújo, J. P., Ramasco, J. J., Amaral, V. S., Suryanarayanan, R., & Correia, J. G. (2006). Percolative transition on ferromagnetic insulator manganites: Uncorrelated to correlated polaron clusters. Physical Review B - Condensed Matter and Materials Physics, 73(10). https://doi.org/10.1103/PhysRevB.73.100408

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