Proceedings of the National Academy of Sciences · 2015 · 94 citations · 29 references
Phase separation is a crucial ingredient of the physics of manganites; however, the role of mixed phases in the development of the colossal magnetoresistance (CMR) phenomenon still needs to be clarified. We report the realization of CMR in a single-valent LaMnO3 manganite. We found that the insulator-to-metal transition at 32 GPa is well described using the percolation theory. Pressure induces phase separation, and the CMR takes place at the percolation threshold. A large memory effect is observed together with the CMR, suggesting the presence of magnetic clusters. The phase separation scenario is well reproduced, solving a model Hamiltonian. Our results demonstrate in a clean way that phase separation is at the origin of CMR in LaMnO3.
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<i>Introduction to Percolation Theory</i>
Dietrich Stauffer, Amnon Aharony, Sidney Redner · Physics Today · 1993 · 6.7K citations
Clarence Zener · Physical Review · 1951 · 6.6K citations
Colossal magnetoresistant materials: the key role of phase separation
Physics Reports · 2001 · 3.5K citations · Full text