Grünebohm Anna, Marathe Madhura, Khachaturyan Ruben, Schiedung Raphael, Lupascu Doru C, Shvartsman Vladimir V
Interdisciplinary Centre for Advanced Materials Simulations (ICAMS), Ruhr-University Bochum, 44801 Bochum, Germany.
Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus UAB, 08193 Bellaterra, Spain.
J Phys Condens Matter. 2021 Nov 29;34(7). doi: 10.1088/1361-648X/ac3607.
Domain walls and phase boundaries are fundamental ingredients of ferroelectrics and strongly influence their functional properties. Although both interfaces have been studied for decades, often only a phenomenological macroscopic understanding has been established. The recent developments in experiments and theory allow to address the relevant time and length scales and revisit nucleation, phase propagation and the coupling of domains and phase transitions. This review attempts to specify regularities of domain formation and evolution at ferroelectric transitions and give an overview on unusual polar topological structures that appear as transient states and at the nanoscale. We survey the benefits, validity, and limitations of experimental tools as well as simulation methods to study phase and domain interfaces. We focus on the recent success of these tools in joint scale-bridging studies to solve long lasting puzzles in the field and give an outlook on recent trends in superlattices.
畴壁和相界是铁电体的基本组成部分,并对其功能特性有强烈影响。尽管这两种界面已被研究了数十年,但通常仅建立了唯象的宏观理解。实验和理论的最新进展使得能够处理相关的时间和长度尺度,并重新审视成核、相传播以及畴与相变的耦合。本综述试图明确铁电转变时畴形成和演化的规律,并概述作为瞬态和在纳米尺度出现的异常极性拓扑结构。我们考察了用于研究相界和畴界的实验工具以及模拟方法的优点、有效性和局限性。我们关注这些工具在联合尺度桥接研究中最近取得的成功,以解决该领域长期存在的难题,并展望超晶格的最新趋势。