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SKM 2023 – wissenschaftliches Programm

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KFM: Fachverband Kristalline Festkörper und deren Mikrostruktur

KFM 4: Focus: Domains and Domainwalls in (Multi)Ferroic II

KFM 4.2: Vortrag

Dienstag, 28. März 2023, 09:30–09:50, POT 51

Real time polarization monitoring during growth for the design of artificial layered ferroelectrics — •Ipek Efe1, Elzbieta Gradauskaite1, Alexander Vogel2, Marta D. Rossell2, Manfred Fiebig1, and Morgan Trassin11Department of Materials, ETH Zurich, Switzerland — 2Electron Microscopy Center, Empa, Switzerland

Increasing the complexity of unit cells of ferroelectric oxides beyond the standard perovskite building block supports exotic functionalities such as superconductivity, magnetoresistance, and ferroelectricity. However, integrating complex crystal structures into epitaxial design is challenging, and routes to precisely monitor the non-perovskite systems have yet to be established. Here, we directly access the polarization dynamics of the layered ferroelectric model system Aurivillius Bi5FeTi3O15 films during growth using in-situ optical second harmonic generation (ISHG). We identify the characteristic Aurivillius antipolar ordering of the dipoles along the growth direction, which leads to an oscillating intensity of the ISHG signal during the layer-by-layer deposition. In combination with reflection high-energy electron diffraction monitoring, we show how the polarization orientation of the films consistently changes from out-of-plane during the growth of perovskite blocks, to fully in-plane upon the completion of the unit-cell with the fluorite-like (Bi2O2)2+ planes. We demonstrate how direct access to structure-dependent polarization dynamics during growth enables the development of novel layered systems incorporating various functional perovskite blocks into the Aurivillius structure.

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