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紫外线辐射增强了由脉冲激光沉积(PLD)等离子体羽流引起的氧空位形成。

UV radiation enhanced oxygen vacancy formation caused by the PLD plasma plume.

作者信息

Hensling F V E, Keeble D J, Zhu J, Brose S, Xu C, Gunkel F, Danylyuk S, Nonnenmann S S, Egger W, Dittmann R

机构信息

Peter Grüneberg Institut 7, Forschungszentrum Jülich, 52425, Jülich, Germany.

Carnegie Laboratory of Physics, SUPA, School of Science and Engineering, University of Dundee, Dundee, DD1 4HN, United Kingdom.

出版信息

Sci Rep. 2018 Jun 11;8(1):8846. doi: 10.1038/s41598-018-27207-5.

Abstract

Pulsed Laser Deposition is a commonly used non-equilibrium physical deposition technique for the growth of complex oxide thin films. A wide range of parameters is known to influence the properties of the used samples and thin films, especially the oxygen-vacancy concentration. One parameter has up to this point been neglected due to the challenges of separating its influence from the influence of the impinging species during growth: the UV-radiation of the plasma plume. We here present experiments enabled by a specially designed holder to allow a separation of these two influences. The influence of the UV-irradiation during pulsed laser deposition on the formation of oxygen-vacancies is investigated for the perovskite model material SrTiO. The carrier concentration of UV-irradiated samples is nearly constant with depth and time. By contrast samples not exposed to the radiation of the plume show a depth dependence and a decrease in concentration over time. We reveal an increase in Ti-vacancy-oxygen-vacancy-complexes for UV irradiated samples, consistent with the different carrier concentrations. We find a UV enhanced oxygen-vacancy incorporation rate as responsible mechanism. We provide a complete picture of another influence parameter to be considered during pulsed laser depositions and unravel the mechanism behind persistent-photo-conductivity in SrTiO.

摘要

脉冲激光沉积是一种常用于生长复杂氧化物薄膜的非平衡物理沉积技术。已知有多种参数会影响所用样品和薄膜的性能,尤其是氧空位浓度。由于在生长过程中难以将其影响与入射物种的影响区分开来,到目前为止,有一个参数一直被忽视:等离子体羽流的紫外线辐射。我们在此展示了由特殊设计的支架实现的实验,以分离这两种影响。针对钙钛矿模型材料钛酸锶,研究了脉冲激光沉积过程中紫外线辐射对氧空位形成的影响。紫外线辐照样品的载流子浓度随深度和时间几乎保持恒定。相比之下,未暴露于羽流辐射的样品则表现出深度依赖性且浓度随时间降低。我们发现紫外线辐照样品中钛空位 - 氧空位复合体增加,这与不同的载流子浓度一致。我们发现紫外线增强的氧空位掺入率是其作用机制。我们提供了脉冲激光沉积过程中另一个需要考虑的影响参数的全貌,并揭示了钛酸锶中持续光电导背后的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/657e/5996021/ee042612b09b/41598_2018_27207_Fig1_HTML.jpg

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