Department of Materials, ETH Zurich, CH-8093 Zürich, Switzerland.
Electron Microscopy Center, Empa, Swiss Federal Laboratories for Materials Science and Technology, CH-8600 Dübendorf, Switzerland.
Phys Rev Lett. 2019 Oct 4;123(14):147601. doi: 10.1103/PhysRevLett.123.147601.
We identify a transient enhancement of the depolarizing field, leading to an unexpected quench of net polarization, during the growth of a prototypical metal-ferroelectric-metal epitaxial system made of BaTiO_{3} and SrRuO_{3}. Reduced conductivity and, hence, charge screening efficiency in the early growth stage of the SrRuO_{3} top electrode promotes a breakdown of ferroelectric BaTiO_{3} into domains. We demonstrate how a thermal annealing procedure can recover the single-domain state. By tracking the polarization state in situ, using optical second harmonic generation, we bring new understanding to interface-related electrostatic effects in ferroelectric capacitors.
我们在生长典型的 BaTiO_3 和 SrRuO_3 金属-铁电体-金属外延系统的过程中,发现了去极化场的瞬时增强,导致净极化的意外猝灭。在 SrRuO_3 顶电极的早期生长阶段,由于电导率降低,电荷屏蔽效率降低,促使铁电体 BaTiO_3 分解成畴。我们证明了热退火过程如何恢复单畴状态。通过使用光学二次谐波产生,在原位跟踪极化状态,我们对铁电电容器中的界面相关静电效应有了新的认识。