4.8 Article

Charge-Order-Induced Ferroelectricity in LaVO3/SrVO3 Superlattices

Journal

PHYSICAL REVIEW LETTERS
Volume 118, Issue 8, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.118.087602

Keywords

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Funding

  1. ONR [N00014-11-1-0666, N00014-14-1-0613]

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The structure and properties of the 1:1 superlattice of LaVO3 and SrVO3 are investigated with a first-principles density-functional-theory-plus-U (DFT + U) method. The lowest energy states are antiferro-magnetic charge-ordered Mott-insulating phases. In one of these insulating phases, layered charge ordering combines with the layered La/Sr cation ordering to produce a polar structure with a large nonzero spontaneous polarization normal to the interfaces. This polarization, comparable to that of conventional ferroelectrics, is produced by electron transfer between the V3+ and V4+ layers. The energy of this normal-polarization state relative to the ground state is only 3 meV per vanadium. Under tensile strain, this energy difference can be further reduced, suggesting that the normal-polarization state can be induced by an electric field applied normal to the superlattice layers, yielding an antiferroelectric double-hysteresis loop. If the system does not switch back to the ground state on removal of the field, a ferroelectric-type hysteresis loop could be observed.

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