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Resistive Switching Mechanisms on TaO$_{x}$ and SrRuO$_{3}$ Thin-Film Surfaces Probed by Scanning Tunneling Microscopy

机译:通过扫描隧道显微镜探测TaO $ _ {x} $和SrRuO $ _ {3} $薄膜表面上的电阻转换机制

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摘要

The local electronic properties of tantalum oxide (TaOx, 2 ≤ x ≤ 2.5) and strontium ruthenate (SrRuO3) thin-film surfaces were studied under the influence of electric fields induced by a scanning tunneling microscope (STM) tip. The switching between different redox states in both oxides is achieved without the need for physical electrical contact by controlling the magnitude and polarity of the applied voltage between the STM tip and the sample surface. We demonstrate for TaOx films that two switching mechanisms operate. Reduced tantalum oxide shows resistive switching due to the formation of metallic Ta, but partial oxidation of the samples changes the switching mechanism to one mediated mainly by oxygen vacancies. For SrRuO3, we found that the switching mechanism depends on the polarity of the applied voltage and involves formation, annihilation, and migration of oxygen vacancies. Although TaOx and SrRuO3 differ significantly in their electronic and structural properties, the resistive switching mechanisms could be elaborated based on STM measurements, proving the general capability of this method for studying resistive switching phenomena in different classes of transition metal oxides.
机译:在扫描隧道显微镜(STM)尖端引起的电场影响下,研究了氧化钽(TaOx,2≤x≤2.5)和钌酸锶(SrRuO3)薄膜表面的局部电子性能。通过控制STM尖端与样品表面之间施加电压的大小和极性,无需物理电接触即可在两种氧化物中实现不同氧化还原状态之间的切换。我们为TaOx膜演示了两种切换机制。还原的钽氧化物显示出由于金属Ta的形成而产生的电阻转换,但是样品的部分氧化将转换机理转变为一种主要由氧空位介导的转换机理。对于SrRuO3,我们发现切换机制取决于施加电压的极性,并且涉及氧空位的形成,an灭和迁移。尽管TaOx和SrRuO3在电子和结构特性上存在显着差异,但是可以基于STM测量来详细说明电阻切换机制,证明了该方法具有研究不同类别的过渡金属氧化物中的电阻切换现象的一般能力。

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