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纳米级气泡畴和超薄铁电薄膜中的拓扑相变。

Nanoscale Bubble Domains and Topological Transitions in Ultrathin Ferroelectric Films.

机构信息

School of Materials Science and Engineering, The University of New South Wales, Sydney, New South Wales, 2052, Australia.

National Laboratory of Solid State Microstructures and Department of Materials Science and Engineering, Nanjing University, Nanjing, 210093, P. R. China.

出版信息

Adv Mater. 2017 Dec;29(46). doi: 10.1002/adma.201702375. Epub 2017 Oct 24.

Abstract

Observation of a new type of nanoscale ferroelectric domains, termed as "bubble domains"-laterally confined spheroids of sub-10 nm size with local dipoles self-aligned in a direction opposite to the macroscopic polarization of a surrounding ferroelectric matrix-is reported. The bubble domains appear in ultrathin epitaxial PbZr Ti O /SrTiO /PbZr Ti O ferroelectric sandwich structures due to the interplay between charge and lattice degrees of freedom. The existence of the bubble domains is revealed by high-resolution piezoresponse force microscopy (PFM), and is corroborated by aberration-corrected atomic-resolution scanning transmission electron microscopy mapping of the polarization displacements. An incommensurate phase and symmetry breaking is found within these domains resulting in local polarization rotation and hence impart a mixed Néel-Bloch-like character to the bubble domain walls. PFM hysteresis loops for the bubble domains reveal that they undergo an irreversible phase transition to cylindrical domains under the electric field, accompanied by a transient rise in the electromechanical response. The observations are in agreement with ab-initio-based calculations, which reveal a very narrow window of electrical and elastic parameters that allow the existence of bubble domains. The findings highlight the richness of polar topologies possible in ultrathin ferroelectric structures and bring forward the prospect of emergent functionalities due to topological transitions.

摘要

观察到一种新型的纳米级铁电畴,称为“气泡畴”-尺寸小于 10nm 的横向限制的亚球体,其局部偶极子自对准到与周围铁电基体的宏观极化相反的方向。由于电荷和晶格自由度之间的相互作用,在超薄外延 PbZrTiO3/SrTiO3/PbZrTiO3 铁电夹层结构中出现了气泡畴。气泡畴的存在通过高分辨率压电力显微镜(PFM)揭示,并通过对极化位移的像差校正原子分辨率扫描透射电子显微镜映射得到证实。在这些畴中发现了不相称的相和对称破缺,导致局部极化旋转,从而赋予气泡畴壁混合的内尔-布洛赫样特性。气泡畴的 PFM 滞后回线表明,它们在电场下经历不可逆的相变为圆柱畴,同时机电响应瞬时增加。这些观察结果与基于第一性原理的计算一致,该计算揭示了允许气泡畴存在的非常窄的电和弹性参数窗口。这些发现突出了在超薄铁电结构中可能存在的丰富的极性拓扑,并提出了由于拓扑转变而出现新功能的前景。

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