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Ultrafast Optically Induced Perturbation of Oxygen Octahedral Rotations in Multiferroic BiFeO3 Thin Films

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Abstract
The functional properties of complex oxides, including magnetism and ferroelectricity, are closely linked to subtle structural distortions. Ultrafast optical excitations provide the means to manipulate structural features and ultimately to affect the functional properties of complex oxides with picosecond-scale precision. We report that the lattice expansion of multiferroic BiFeO3 following above-bandgap optical excitation leads to distortion of the oxygen octahedral rotation (OOR) pattern. The continuous coupling between OOR and strain was probed using time-resolved X-ray free-electron laser diffraction with femtosecond time resolution. Density functional theory calculations predict a relationship between the OOR and the elastic strain consistent with the experiment, demonstrating a route to employing this approach in a wider range of systems. Ultrafast control of the functional properties of BiFeO3 thin films is enabled by this approach because the OOR phenomena are related to ferroelectricity, and via the Fe-O-Fe bond angles, the superexchange interaction between Fe atoms. © 2024 American Chemical Society.
Author(s)
Li, NiLee, Hyeon JunSri Gyan, DeepankarAhn, YoungjunLandahl, Eric C.Carnis, JeromeLee, Jun YoungKim, Tae YeonUnithrattil, SanjithJo, Ji YoungChun, Sae HwanKim, SunamPark, Sang-YounEom, IntaeAdamo, CarolinaLi, Sabrina J.Kaaret, Jeffrey Z.Schlom, Darrell G.Wen, HaidanBenedek, Nicole A.Evans, Paul G.
Issued Date
2024-05
Type
Article
DOI
10.1021/acs.nanolett.4c01519
URI
https://scholar.gist.ac.kr/handle/local/9575
Publisher
American Chemical Society
Citation
Nano Letters, v.24, no.21, pp.6417 - 6424
ISSN
1530-6984
Appears in Collections:
Department of Materials Science and Engineering > 1. Journal Articles
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