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非破坏性测绘外延复杂金属氧化物中的长程位错应变场。

Nondestructive Mapping of Long-Range Dislocation Strain Fields in an Epitaxial Complex Metal Oxide.

机构信息

Department of Physics , Technical University of Denmark , Kgs. Lyngby 2800 , Denmark.

Department of Mechanical Engineering , Technical University of Denmark , Kgs. Lyngby 2800 , Denmark.

出版信息

Nano Lett. 2019 Mar 13;19(3):1445-1450. doi: 10.1021/acs.nanolett.8b03839. Epub 2019 Feb 13.

Abstract

The misfit dislocations formed at heteroepitaxial interfaces create long-ranging strain fields in addition to the epitaxial strain. For systems with strong lattice coupling, such as ferroic oxides, this results in unpredictable and potentially debilitating functionality and device performance. In this work, we use dark-field X-ray microscopy to map the lattice distortions around misfit dislocations in an epitaxial film of bismuth ferrite (BiFeO), a well-known multiferroic. We demonstrate the ability to precisely quantify weak, long-ranging strain fields and their associated symmetry lowering without modifying the mechanical state of the film. We isolate the screw and edge components of the individual dislocations and show how they result in weak charge heterogeneities via flexoelectric coupling. We show that even systems with small lattice mismatches and additional mechanisms of stress relief (such as mechanical twinning) may still give rise to measurable charge and strain heterogeneities that extend over mesoscopic length scales. This sets more stringent physical limitations on device size, dislocation density, and the achievable degree of lattice mismatch in epitaxial systems.

摘要

在异质外延界面形成的错位会产生长程应变场,除了外延应变之外。对于晶格耦合较强的系统,如铁电氧化物,这会导致不可预测且潜在的功能和器件性能受损。在这项工作中,我们使用暗场 X 射线显微镜来绘制外延 BiFeO3(一种众所周知的多铁材料)薄膜中错位周围的晶格扭曲。我们展示了精确量化弱、长程应变场及其相关对称降低的能力,而无需改变薄膜的机械状态。我们分离出单个错位的螺位错和刃位错分量,并展示它们如何通过挠曲电耦合导致弱电荷非均匀性。我们表明,即使是晶格失配较小且具有额外的应力缓解机制(例如机械孪晶)的系统,仍可能会产生可测量的电荷和应变非均匀性,这些非均匀性会延伸到介观长度尺度。这为外延系统中的器件尺寸、位错密度和可实现的晶格失配程度设定了更严格的物理限制。

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