Universal Dimensionality of Ferroelectric Domain Walls in Ultrathin Films

Somnath Kale, Adrian Petraru, Hermann Kohlstedt, Rohit Soni
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Abstract

The dimensionality of dynamic interfaces—domain walls (DWs) —is greatly influenced by symmetry and physical dimensions, irrespective of the microscopic details of the system. To address this fundamental question for the ferroelectric model system, the DW scaling criticality and dimensionality is investigated in ultrathin films of varied ferroelectric materials, compositions, and electrode–ferroelectric interfaces, grown on nominally flat and vicinal substrates. In spite of significant variations among ferroelectric systems, the observed prevalence of 1D DWs is consistent with a random bond disorder, elucidated through a scenario of 2D nucleation and growth-driven DW creep. These findings highlight the thickness size-dominated universal behavior of ferroelectric DWs, uncovering fascinating prospects for dimensionally engineered DW-based nanoelectronics.

Abstract Image

超薄薄膜中铁电畴壁的普遍维度
动态界面--域壁(DW)--的尺寸受对称性和物理尺寸的影响很大,与系统的微观细节无关。为了解决铁电模型系统的这一基本问题,我们研究了生长在名义平坦和沧桑基底上的不同铁电材料、成分和电-铁电界面的超薄薄膜的 DW 缩放临界值和尺寸。尽管铁电系统之间存在显著差异,但观察到的一维 DW 的普遍性与随机键无序一致,并通过二维成核和生长驱动的 DW 蠕变情景进行了阐释。这些发现凸显了铁电 DW 以厚度尺寸为主的普遍行为,为基于 DW 的尺寸工程纳米电子学揭开了迷人的前景。
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