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独立铁磁超晶格中的极高居里温度和垂直交换偏置

Extreme Enhanced Curie Temperature and Perpendicular Exchange Bias in Freestanding Ferromagnetic Superlattices.

作者信息

Zhang Peng, He Bin, Guo Jinrui, Wang Qixiang, Han Yue, Shi Chaoqun, Chen Yanan, Fang Hong, Wang Jie, Yan Shishen, Lü Weiming

机构信息

Spintronics Institute, School of Physics and Technology, University of Jinan, Jinan, Shandong 250022, People's Republic of China.

Functional Materials and Acousto-Optic Instruments Institute, School of Instrumentation Science and Engineering, Harbin Institute of Technology, Harbin, Heilongjiang 150080, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 5;15(13):17309-17316. doi: 10.1021/acsami.2c22715. Epub 2023 Mar 22.

Abstract

Most recently, the freestanding of an epitaxial single-crystal oxide has been greatly developed to its fundamental concerns and the possibility of integration with metal, two-dimensional, and organic materials for more promising functionalities. In an artificial ferromagnetic oxide heterostructure and superlattice, the release of the substrate constraint can induce a reasonable transformation of the magnetic structure because the change of the lattice field occurs. In this study, we have comprehensively investigated the evolution of magnetic properties of (LaCaMnO/SrRuO) [(LCMO/SRO)] ferromagnetic superlattices while they are epitaxially on SrTiO and freestanding. It is found that the Curie temperature and the perpendicular exchange bias of the freestanding superlattices exhibit extreme sensitivity to the interface number and the thickness of LCMO and SRO, which can maximumly reach ∼293 K and ∼1150 Oe. These enhanced and bulk-beyond magnetic behaviors originate from the interfacial magnetic transition from ferromagnetic to antiferromagnetic via the charge reconstruction with the assistance of strain. Our study provides not only a reference for designing a high-performance flexible ferromagnetic architectural superlattice but also a deep understanding of the interfacial effect in freestanding ferromagnetic heterostructures benefiting flexible spintronics.

摘要

最近,外延单晶氧化物的独立式发展在其基本问题以及与金属、二维材料和有机材料集成以实现更有前景的功能方面取得了重大进展。在人工铁磁氧化物异质结构和超晶格中,由于晶格场的变化,去除衬底约束可导致磁结构发生合理转变。在本研究中,我们全面研究了(LaCaMnO/SrRuO) [(LCMO/SRO)]铁磁超晶格在 epitaxially on SrTiO 且独立存在时磁性能的演变。研究发现,独立超晶格的居里温度和垂直交换偏置对 LCMO 和 SRO 的界面数量及厚度表现出极高的敏感性,最高可达约 293 K 和约 1150 Oe。这些增强的、超越体相的磁行为源于在应变辅助下通过电荷重构实现的从铁磁到反铁磁的界面磁转变。我们的研究不仅为设计高性能柔性铁磁结构超晶格提供了参考,还深入理解了独立铁磁异质结构中的界面效应,这有利于柔性自旋电子学的发展。 (注:原文中“epitaxially on SrTiO”表述似乎不太完整准确,但按要求直接翻译)

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