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Position detection and observation of a conducting filament hidden under a top electrode in a Ta2O5-based atomic switch

机译:基于Ta2O5的原子开关中隐藏在顶部电极下方的导电丝的位置检测和观察

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摘要

Resistive random access memories (ReRAMs) are promising next-generation memory devices. Observation of the conductive filaments formed in ReRAMs is essential in understanding their operating mechanisms and their expected ultimate performance. Finding the position of the conductive filament is the key process in the preparation of samples for cross-sectional transmission electron microscopy (TEM) imaging. Here, we propose a method for locating the position of conductive filaments hidden under top electrodes. Atomic force microscopy imaging with a conductive tip detects the current flowing through a conductive filament from the bottom electrode, which reaches its maximum at a position that is above the conductive filament. This is achieved by properly biasing a top electrode, a bottom electrode and the conductive tip. This technique was applied to Cu/Ta2O5/Pt atomic switches, revealing the formation of a single Cu filament in a device, although the device had a large area of 5 x 5 mu m(2). Change in filament size was clearly observed depending on the compliance current used in the set process. It was also found from the TEM observation that the cross-sectional shape of the formed filament varies considerably, which is attributable to different Cu nuclei growth mechanisms.
机译:电阻式随机存取存储器(ReRAM)是有前途的下一代存储设备。观察ReRAM中形成的导电细丝对于理解其工作机理和预期的最终性能至关重要。在准备用于横截面透射电子显微镜(TEM)成像的样品时,找到导电丝的位置是关键过程。在这里,我们提出了一种方法来定位隐藏在顶部电极下方的导电丝的位置。具有导电尖端的原子力显微镜成像检测从底部电极流过导电细丝的电流,该电流在导电细丝上方的位置达到最大值。这可以通过适当地偏置顶部电极,底部电极和导电尖端来实现。这项技术应用于Cu / Ta2O5 / Pt原子开关,揭示了在设备中形成单个Cu灯丝,尽管该设备的面积为5 x 5μm(2)。根据固定过程中使用的顺应电流,可以清楚地观察到细丝尺寸的变化。从TEM观察还发现,形成的细丝的横截面形状变化很大,这归因于不同的Cu核生长机理。

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