Optically Induced Picosecond Lattice Compression in the Dielectric Component of a Strongly Coupled Ferroelectric/Dielectric Superlattice

  • Gyan, Deepankar Sri
  • Lee, Hyeon Jun
  • Ahn, Youngjun
  • Carson, River B.
  • Carnis, Jerome
  • 외 12명
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초록

Above-bandgap femtosecond optical excitation of a ferroelectric/dielectric BaTiO3/CaTiO3 superlattice leads to structural responses that are a consequence of the screening of the strong electrostatic coupling between the component layers. Time-resolved X-ray free-electron laser diffraction shows that the structural response to optical excitation includes a net lattice expansion of the superlattice consistent with depolarization-field screening driven by the photoexcited charge carriers. The depolarization-field-screening-driven expansion is separate from a photoacoustic pulse launched from the bottom electrode on which the superlattice is epitaxially grown. The distribution of diffracted intensity of superlattice X-ray reflections indicates that the depolarization-field-screening-induced strain includes a photoinduced expansion in the ferroelectric BaTiO3 and a contraction in CaTiO3. The magnitude of expansion in BaTiO3 layers is larger than the contraction in CaTiO3. The difference in the magnitude of depolarization-field-screening-driven strain in the BaTiO3 and CaTiO3 components can arise from the contribution of the oxygen octahedral rotation patterns at the BaTiO3/CaTiO3 interfaces to the polarization of CaTiO3. The depolarization-field-screening-driven polarization reduction in the CaTiO3 layers points to a new direction for the manipulation of polarization in the component layers of a strongly coupled ferroelectric/dielectric superlattice.

키워드

depolarization-field screeningferroelectricdielectric superlatticeultrafast structural phenomenaX-ray free-electron laser diffractionPOLARIZATION ENHANCEMENTOXIDE
제목
Optically Induced Picosecond Lattice Compression in the Dielectric Component of a Strongly Coupled Ferroelectric/Dielectric Superlattice
저자
Gyan, Deepankar SriLee, Hyeon JunAhn, YoungjunCarson, River B.Carnis, JeromeKim, Tae YeonUnithrattil, SanjithLee, Jun YoungChun, Sae HwanKim, SunamEom, IntaeKim, MinseokPark, Sang-YounKim, Kyung SookLee, Ho NyungJo, Ji YoungEvans, Paul G.
DOI
10.1002/aelm.202101051
발행일
2022-06
유형
Article
저널명
Advanced Electronic Materials
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