Room-temperature electronic phase transitions in the continuous phase diagrams of perovskite manganites

Abstract:

:Highly correlated electronic systems--such as transition-metal oxides that are doped Mott insulators--are complex systems which exhibit puzzling phenomena, including high-temperature superconductivity and colossal magnetoresistivity. Recent studies suggest that in such systems collective electronic phenomena are important, arising from long-range Coulomb interactions and magnetic effects. The qualitative behaviour of these systems is strongly dependent on charge filling (the level of doping) and the lattice constant. Here we report a time-efficient and systematic experimental approach for studying the phase diagrams of condensed-matter systems. It involves the continuous mapping of the physical properties of epitaxial thin films of perovskite manganites (a class of doped Mott insulator) as their composition is varied. We discover evidence that suggests the presence of phase boundaries of electronic origin at room temperature.

journal_name

Nature

journal_title

Nature

authors

Yoo YK,Duewer F,Yang H,Yi D,Li JW,Xiang XD

doi

10.1038/35021018

keywords:

subject

Has Abstract

pub_date

2000-08-17 00:00:00

pages

704-8

issue

6797

eissn

0028-0836

issn

1476-4687

journal_volume

406

pub_type

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