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Magneto-Orbital Coupling at Room Temperature in Superlattices Consisting of Nonferroic Constituent Layers

Authors
Choi, Eui YoungKim, Mi KyungEom, Ki TaeChoi, Min SuKoh, Yoon YoungSeo, Ji Won
Issue Date
Mar-2020
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF PHYSICAL CHEMISTRY C, v.124, no.12, pp 6741 - 6746
Pages
6
Journal Title
JOURNAL OF PHYSICAL CHEMISTRY C
Volume
124
Number
12
Start Page
6741
End Page
6746
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/89542
DOI
10.1021/acs.jpcc.0c00754
ISSN
1932-7447
1932-7455
Abstract
We have investigated the magnetic field dependence of the orbital structure of an artificial tricolor superlattice composed of nonferroic insulators, NdMnO3, SrMnO3, and LaMnO3, at room temperature. Surprisingly, an external magnetic field applied at room temperature causes a pronounced orbital polarization change in superlattices with a shortest period and many interfaces, and it had no influence on the orbital configuration of superlattices with thicker constituent layers. The magneto-orbital coupling observed in the superlattices with nonmultiferroic constituents even at room temperature suggest the crucial role of interfaces and interface-induced oxygen octahedral rotation discontinuity. The magneto-orbital coupling and its mechanism are demonstrated by theoretical calculations. Our findings raise possible implications in orbital engineering to control physical properties.
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