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Magneto-optical investigation of the field-induced spin-glass insulator to ferromagnetic metallic transition of the bilayer manganite (La0.4Pr0.6)1.2Sr1.8Mn2O7

J. Cao, J. T. Haraldsen, R. C. Rai, S. Brown, J. L. Musfeldt, Y. J. Wang, X. Wei, M. Apostu, R. Suryanarayanan, A. Revcolevschi

cond-mat.str-elarXiv:cond-mat/0606339

Abstract

We measured the magneto-optical response of (La0.4Pr0.6)1.2Sr1.8Mn2O7 in order to investigate the microscopic aspects of the magnetic field driven spin-glass insulator to ferromagnetic metal transition. Application of a magnetic field recovers the ferromagnetic state with an overall redshift of the electronic structure, growth of the bound carrier localization associated with ferromagnetic domains, development of a pseudogap, and softening of the Mn-O stretching and bending modes that indicate a structural change. We discuss field- and temperature-induced trends within the framework of the Tomioka-Tokura global electronic phase diagram picture and suggest that controlled disorder near a phase boundary can be used to tune the magnetodielectric response. Remnants of the spin-glass insulator to ferromagnetic metallic transition can also drive 300 K color changes in (La0.4Pr0.6)1.2Sr1.8Mn2O7.

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