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Reduced resistance drift in tunnel junctions using confined tunnel barriers

机译:使用受限的隧道势垒降低了隧道结处的电阻漂移

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摘要

Metal-insulator-metal (MIM) tunnel junctions with the aluminum oxide tunnel barriers confined between cobalt electrodes exhibit less resistance drift over time than junctions that utilize a thick, unconfined aluminum electrode. The improved long time stability is attributed to better initial oxide quality achieved through confinement (use of a potential energy well for the oxygen) and plasma oxidation. In this work, Co/AlOx/Co and Co/Al/AlOx/Co tunnel junction aging is compared over a period of approximately 9 months using transport measurements and Wentzel-Kramers-Brillouin (WKB) based modelling. The Co/AlOx/Co (confined) tunnel junction resistance increased by (32 ± 6) % over 5400 h, while Co/Al/AlOx/Co (unconfined) tunnel junction resistance increased by (85 ± 23) % over 5200 h. Fit parameters for the tunnel barrier width and potential energy barriers were extracted using WKB transport modelling. These values change only a small amount in the confined Co/AlOx/Co tunnel junction but show a significant drift in the unconfined Co/AlOx/Co tunnel junction.
机译:与利用厚的无约束铝电极的结相比,具有限制在钴电极之间的氧化铝隧道势垒的金属-绝缘体-金属(MIM)隧道结在时间上表现出较小的电阻漂移。改善的长期稳定性归因于通过限制(将势能阱用于氧气)和等离子体氧化而获得的更好的初始氧化物质量。在这项工作中,使用传输测量和基于Wentzel-Kramers-Brillouin(WKB)的模型,比较了大约9个月内Co / AlOx / Co和Co / Al / AlOx / Co隧道结的时效。在5400小时内,Co / AlOx / Co(受限)隧道结电阻增加了(32±6)%,而在5200小时内,Co / Al / AlOx / Co(未受限)隧道结电阻增加了(85±23)%。使用WKB传输模型提取隧道势垒宽度和势能垒的拟合参数。这些值在受限的Co / AlOx / Co隧道结中仅发生少量变化,但在无约束的Co / AlOx / Co隧道结中显示出明显的漂移。

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