MECHANISM STUDY ON OXYGEN VACANCY INDUCED RESISTANCE SWITCHING IN Au/LaMnO3/SrNb0.01Ti0.99O3 | |
Jin, YL ; Xu, ZT ; Jin, KJ ; Ge, C ; Lu, HB ; Yang, GZ | |
刊名 | MODERN PHYSICS LETTERS B |
2013 | |
卷号 | 27期号:11 |
关键词 | Perovskite oxide oxygen vacancy resistive switching self-consistent calculations |
ISSN号 | 0217-9849 |
通讯作者 | Jin, YL (reprint author), Chinese Acad Sci, Beijing Natl Lab Condensed Matter Phys, Inst Phys, Beijing 100190, Peoples R China. |
中文摘要 | Mechanism of resistance switching in heterostructure Au/LaMnO3/SrNb0.01Ti0.99O3 was investigated. In Au/LaMnO3/SrNb0.01Ti0.99O3 devices the LaMnO3 films were fabricated under various oxygen pressures. The content of the oxygen vacancies has a significant impact on the resistance switching performance. We propose that the resistance switching characteristics of Au/LaMnO3/SrNb0.01Ti0.99O3 arise from the modulation of the Au/LaMnO3 Schottky barrier due to the change of the oxygen vacancy concentration at Au/LaMnO3 interface under the external electric field. The effect of the oxygen vacancy concentration on the resistance switching is explained based on the self-consistent calculation. Both the experimental and numerical results confirm the important role of the oxygen vacancies in the resistance switching behavior. |
资助信息 | National Basic Research Program of China [2012CB921403, 2013CB328706]; National Natural Science Foundation of China [10825418, 11134012] |
语种 | 英语 |
公开日期 | 2014-01-16 |
内容类型 | 期刊论文 |
源URL | [http://ir.iphy.ac.cn/handle/311004/57203] |
专题 | 物理研究所_物理所公开发表论文_物理所公开发表论文_期刊论文 |
推荐引用方式 GB/T 7714 | Jin, YL,Xu, ZT,Jin, KJ,et al. MECHANISM STUDY ON OXYGEN VACANCY INDUCED RESISTANCE SWITCHING IN Au/LaMnO3/SrNb0.01Ti0.99O3[J]. MODERN PHYSICS LETTERS B,2013,27(11). |
APA | Jin, YL,Xu, ZT,Jin, KJ,Ge, C,Lu, HB,&Yang, GZ.(2013).MECHANISM STUDY ON OXYGEN VACANCY INDUCED RESISTANCE SWITCHING IN Au/LaMnO3/SrNb0.01Ti0.99O3.MODERN PHYSICS LETTERS B,27(11). |
MLA | Jin, YL,et al."MECHANISM STUDY ON OXYGEN VACANCY INDUCED RESISTANCE SWITCHING IN Au/LaMnO3/SrNb0.01Ti0.99O3".MODERN PHYSICS LETTERS B 27.11(2013). |
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