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Design and Manipulation of Ferroic Domains in Complex Oxide Heterostructures

机译:复合氧化异质结构中铁域的设计与操纵

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摘要

The current burst of device concepts based on nanoscale domain-control in magnetically and electrically ordered systems motivates us to review the recent development in the design of domain engineered oxide heterostructures. The improved ability to design and control advanced ferroic domain architectures came hand in hand with major advances in investigation capacity of nanoscale ferroic states. The new avenues offered by prototypical multiferroic materials, in which electric and magnetic orders coexist, are expanding beyond the canonical low-energy-consuming electrical control of a net magnetization. Domain pattern inversion, for instance, holds promises of increased functionalities. In this review, we first describe the recent development in the creation of controlled ferroelectric and multiferroic domain architectures in thin films and multilayers. We then present techniques for probing the domain state with a particular focus on non-invasive tools allowing the determination of buried ferroic states. Finally, we discuss the switching events and their domain analysis, providing critical insight into the evolution of device concepts involving multiferroic thin films and heterostructures.
机译:基于磁性和电动系统中的纳米级域控制的电流概念的电流突发激励我们在域设计氧化物异质结构设计中回顾最近的发展。改善设计和控制先进的铁域架构的能力在手中掌握了纳米级菲尼斯国家的调查能力的重大进展。由原型多体材料提供的新途径,其中电动订单共存,正在扩大超出净磁化的规范低能耗电气控制。例如,域模式反演保持了增加功能的承担。在本次审查中,我们首先描述了薄膜和多层在薄膜和多层中创建控制的铁电和多体型域架构的最新发展。然后,我们存在用于探测域状态的技术,特别侧重于非侵入性工具,允许确定埋地的铁态。最后,我们讨论了切换事件及其域分析,提供了对涉及多体型薄膜和异质结构的器件概念的演变的关键洞察。

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