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Tuning electromagnetic properties of SrRuO3 epitaxial thin films via atomic control of cation vacancies

机译:通过原子控制阳离子空位来调谐SrRuO3外延薄膜的电磁性能

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摘要

Elemental defect in transition metal oxides is an important and intriguing subject that result in modifications in variety of physical properties including atomic and electronic structure, optical and magnetic properties. Understanding the formation of elemental vacancies and their influence on different physical properties is essential in studying the complex oxide thin films. In this study, we investigated the physical properties of epitaxial SrRuO3 thin films by systematically manipulating cation and/or oxygen vacancies, via changing the oxygen partial pressure (P(O2)) during the pulsed laser epitaxy (PLE) growth. Ru vacancies in the low-P(O2)-grown SrRuO3 thin films induce lattice expansion with the suppression of the ferromagnetic T C down to ~120 K. Sr vacancies also disturb the ferromagnetic ordering, even though Sr is not a magnetic element. Our results indicate that both A and B cation vacancies in an ABO3 perovskite can be systematically engineered via PLE, and the structural, electrical, and magnetic properties can be tailored accordingly.
机译:过渡金属氧化物中的元素缺陷是一个重要且引人入胜的主题,其导致多种物理性质(包括原子和电子结构,光学和磁性)的改变。在研究复杂氧化物薄膜时,了解元素空位的形成及其对不同物理性能的影响至关重要。在这项研究中,我们通过改变脉冲激光外延(PLE)生长过程中的氧分压(P(O2)),通过系统地控制阳离子和/或氧空位,研究了外延SrRuO3薄膜的物理性质。低P(O2)生长的SrRuO3薄膜中的Ru空位会引起晶格膨胀,同时将铁磁T C抑制到约120K。即使Sr不是磁性元素,Sr空位也会干扰铁磁有序。我们的结果表明,可以通过PLE系统地设计ABO3钙钛矿中的A和B阳离子空位,并且可以相应地调整其结构,电和磁性能。

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