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首页> 外文期刊>ACS nano >Subfilamentary Networks Cause Cycle-to-Cycle Variability in Memristive Devices
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Subfilamentary Networks Cause Cycle-to-Cycle Variability in Memristive Devices

机译:亚离心网络导致Memristive设备中的周期到循环变异

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摘要

A major obstacle for the implementation of redox-based memristive memory or logic technology is the large cycle-to-cycle and device-to-device variability. Here, we use spectromicroscopic photoemission threshold analysis and operando XAS analysis to experimentally investigate the microscopic origin of the variability. We find that some devices exhibit variations in the shape of the conductive filament or in the oxygen vacancy distribution at and around the filament. In other cases, even the location of the active filament changes from one cycle to the next. We propose that both effects originate from the coexistence of multiple (sub)filaments and that the active, current-carrying filament may change from cycle to cycle. These findings account for the observed variability in device performance and represent the scientific basis, rather than prior purely empirical engineering approaches, for developing stable memristive devices.
机译:实现基于氧化还原的Memristive存储器或逻辑技术的主要障碍是循环到循环和设备到设备的可变性。 在这里,我们使用光谱分析阈值分析和Operando XAS分析来通过实验研究可变性的显微突起。 我们发现一些装置表现出导电灯丝形状的变化或长丝的氧空位分布。 在其他情况下,即使是主动灯丝的位置也从一个循环变为下一个周期。 我们提出两种效应来自多个(亚)细丝的共存,并且激活的携带灯丝可能从循环变为循环。 这些调查结果占了设备性能的观察到可变性,而不是以先前的纯粹经验工程方法表示稳定的铭文设备。

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