Neutron and x-ray evidence of charge melting in ferromagnetic layered colossal magnetoresistance manganites (invited)

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Abstract

Recent x-ray and neutron scattering studies have revealed static diffuse scattering due to polarons in the paramagnetic phase of the colossal magnetoresistive manganites La2-2xSr1+2xMn2O7, with x = 0.40 and 0.44. We show that the polarons exhibit short-range incommensurate correlations that grow with decreasing temperature, but disappear abruptly at the combined ferromagnetic and metal-insulator transition in the x = 0.40 system because of the sudden charge delocalization, while persisting at low temperature in the antiferromagnetic x = 0.44 system. The "melting" of the polaron ordering as we cool through TC occurs with the collapse of the polaron scattering itself in the x = 0.40 system. This short-range polaron order is characterized by an ordering wave vector q = (0.3,0,1) that is almost independent of x for x≥0.38, and is consistent with a model of disordered stripes. © 2001 American Institute of Physics.

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Vasiliu-Doloc, L., Osborn, R., Rosenkranz, S., Mesot, J., Mitchell, J. F., Sinha, S. K., … Islam, Z. (2001). Neutron and x-ray evidence of charge melting in ferromagnetic layered colossal magnetoresistance manganites (invited). Journal of Applied Physics, 89(11 II), 6840–6845. https://doi.org/10.1063/1.1365256

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