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Striping of orbital-order with charge-disorder in optimally doped manganites.


ABSTRACT: The phase diagrams of LaMnO3 perovskites have been intensely studied due to the colossal magnetoresistance (CMR) exhibited by compositions around the [Formula: see text] doping level. However, phase segregation between ferromagnetic (FM) metallic and antiferromagnetic (AFM) insulating states, which itself is believed to be responsible for the colossal change in resistance under applied magnetic field, has prevented an atomistic-level understanding of the orbital ordered (OO) state at this doping level. Here, through the detailed crystallographic analysis of the phase diagram of a prototype system (AMn[Formula: see text]Mn[Formula: see text]O12), we show that the superposition of two distinct lattice modes gives rise to a striping of OO Jahn-Teller active Mn3+ and charge disordered (CD) Mn3.5+ layers in a 1:3 ratio. This superposition only gives a cancellation of the Jahn-Teller-like displacements at the critical doping level. This striping of CD Mn3.5+ with Mn3+ provides a natural mechanism though which long range OO can melt, giving way to a conducting state.

SUBMITTER: Chen WT 

PROVIDER: S-EPMC8566459 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Striping of orbital-order with charge-disorder in optimally doped manganites.

Chen Wei-Tin WT   Wang Chin-Wei CW   Cheng Ching-Chia CC   Chuang Yu-Chun YC   Simonov Arkadiy A   Bristowe Nicholas C NC   Senn Mark S MS  

Nature communications 20211103 1


The phase diagrams of LaMnO<sub>3</sub> perovskites have been intensely studied due to the colossal magnetoresistance (CMR) exhibited by compositions around the [Formula: see text] doping level. However, phase segregation between ferromagnetic (FM) metallic and antiferromagnetic (AFM) insulating states, which itself is believed to be responsible for the colossal change in resistance under applied magnetic field, has prevented an atomistic-level understanding of the orbital ordered (OO) state at  ...[more]

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