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首页> 外文期刊>Nanotechnology >Complex electrical spiking activity in resistive switching nanostructured Au two-terminal devices
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Complex electrical spiking activity in resistive switching nanostructured Au two-terminal devices

机译:电阻切换纳米结构AU双端子装置复合电尖峰活动

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Networks of nanoscale objects are the subject of increasing interest as resistive switching systems for the fabrication of neuromorphic computing architectures. Nanostructured films of bare gold clusters produced in gas phase with thickness well beyond the electrical percolation threshold, show a non-ohmic electrical behavior and resistive switching, resulting in groups of current spikes with irregular temporal organization. Here we report the systematic characterization of the temporal correlations between single spikes and spiking rate power spectrum of nanostructured Au two-terminal devices consisting of a cluster-assembled film deposited between two planar electrodes. By varying the nanostructured film thickness we fabricated two different classes of devices with high and low initial resistance respectively. We show that the switching dynamics can be described by a power law distribution in low resistance devices whereas a bi-exponential behavior is observed in the high resistance ones. The measured resistance of cluster-assembled films shows a 1/f a scaling behavior in the range of analyzed frequencies. Our results suggest the possibility of using cluster-assembled Au films as components for neuromorphic systems where a certain degree of stochasticity is required.
机译:纳米级目录的网络是对用于制造神经形态计算架构的电阻切换系统的兴趣增加的主题。在气相中产生的裸金簇的纳米结构薄膜,厚度远远超出电渗透阈值,显示出非欧姆的电气行为和电阻切换,导致具有不规则时间组织的当前尖峰组。在这里,我们报告了由纳米结构的Au双端子装置的单峰值和尖峰率功率谱之间的时间相关性的系统表征,包括沉积在两个平面电极之间的簇组装膜。通过改变纳米结构薄膜厚度,我们分别制造了具有高和低初始电阻的两种不同类别。我们表明,在低电阻器件中的电力法分布可以描述切换动力学,而在高电阻器中观察到双指数行为。簇组装膜的测量电阻显示了分析频率范围内的1 / F的缩放行为。我们的研究结果表明,使用簇组装的Au薄膜作为所需程度的神经形式系统的组分。

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