论文标题

通过人工异质结构在srRUO3中对八面体倾斜的传播控制

Propagation control of octahedral tilt in SrRuO3 via artificial heterostructuring

论文作者

Jeong, Seung Gyo, Han, Gyeongtak, Song, Sehwan, Min, Taewon, Mohamed, Ahmed Yousef, Park, Sungkyun, Lee, Jaekwang, Jeong, Hu Young, Kim, Young-Min, Cho, Deok-Yong, Choi, Woo Seok

论文摘要

金属氧气八面体的粘结几何工程是调整过渡金属氧化物各种功能特性的一种简便方法。已经提出了几种方法,包括外延应变,厚度和化学计量控制,以有效调整八面体的旋转和倾斜度,但是这些方法不可避免地伴随着不必要的结构修饰,例如薄膜晶状体晶状体参数的变化。在这项研究中,我们提出了一种方法,可以选择性地设计八面体粘结几何形状,同时维持可能隐含影响功能特性的其他参数。使用原子设计的SRRUO3/SRTIO3超晶格开发了八面体倾斜繁殖工程的概念。特别地,通过改变相邻的SRTIO3层的厚度,可以系统地控制srRUO3层中RUO6八面体倾斜的传播。这导致了SRRUO3层的电磁特性的实质性修饰,从而显着增强了RU的磁矩。我们的方法提供了一种选择性操纵强相关氧化物的粘结几何形状的方法,从而使对其功能特性具有更好的理解和更大的可控性。

Bonding geometry engineering of metal-oxygen octahedra is a facile way of tailoring various functional properties of transition metal oxides. Several approaches, including epitaxial strain, thickness, and stoichiometry control, have been proposed to efficiently tune the rotation and tilting of the octahedra, but these approaches are inevitably accompanied by unnecessary structural modifications such as changes in thin-film lattice parameters. In this study, we propose a method to selectively engineer the octahedral bonding geometries, while maintaining other parameters that might implicitly influence the functional properties. A concept of octahedral tilt propagation engineering has been developed using atomically designed SrRuO3/SrTiO3 superlattices. In particular, the propagation of RuO6 octahedral tilting within the SrRuO3 layers having identical thicknesses was systematically controlled by varying the thickness of adjacent SrTiO3 layers. This led to a substantial modification in the electromagnetic properties of the SrRuO3 layer, significantly enhancing the magnetic moment of Ru. Our approach provides a method to selectively manipulate the bonding geometry of strongly correlated oxides, thereby enabling a better understanding and greater controllability of their functional properties.

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