Evolution of magnetic polarons and spin-carrier interactions through the metal-insulator transition in Eu1-xGdxO

Abstract

Raman scattering studies as functions of temperature, magnetic field, and Gd-substitution are used to investigate the evolution of magnetic polarons and spin-carrier interactions through the metal-insulator transition in Eu1-xGdxO. These studies reveal a greater richness of phase behavior than have been previously observed using transport measurements: a spin-fluctuation-dominated paramagnetic (PM) phase regime for T > T* > TC, a two-phase regime for T < T* in which magnetic polarons develop and coexist with a remnant of the PM phase, and an inhomogeneous ferromagnetic phase regime for T < TC.

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