Abstract
The phase diagram of (formula presented) (formula presented) has been determined by neutron diffraction, magnetization, and electrical conductivity measurements in order to investigate the nature of the transition between ferromagnetic metallic and charge-ordered insulating states near (formula presented) Two possible scenarios for this transition have been proposed: a “quantum-critical-point”-like feature, near which an associated charge-disordered paramagnetic phase is present, or a phase coexistence region. We demonstrate that the latter case is true, phase segregation occurring on a mesoscopic macroscopic length scale (several hundred angstroms to several microns). Our results show that no significant amount of the charge-disordered paramagnetic phase is present at low temperatures. Our data also indicate that the charge-ordered insulator to ferromagnetic metal phase boundary is temperature as well as composition dependent. © 2002 The American Physical Society.
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CITATION STYLE
Blake, G. R., Chapon, L., Radaelli, P. G., Argyriou, D. N., Gutmann, M. J., & Mitchell, J. F. (2002). Structural and magnetic ordering in (formula presented): Quantum critical point versus phase segregation scenarios. Physical Review B - Condensed Matter and Materials Physics, 66(14), 1–9. https://doi.org/10.1103/PhysRevB.66.144412
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