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Analog neuromorphic module based on carbon nanotube synapses

机译:基于碳纳米管突触的模拟神经形态模块

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摘要

We report an analog neuromorphic module composed of p-type carbon nanotube (CNT) synapses and an integrate-and-fire (I&F) circuit. The CNT synapse has a field-effect transistor structure with a random CNT network as its channel and an aluminum oxide dielectric layer implanted with indium ions as its gate. A positive voltage pulse (spike) applied on the gate attracts electrons into the defect sites of the gate dielectric layer, and the trapped electrons are gradually released after the pulse is removed. The electrons modify the hole concentration and induce a dynamic postsynaptic current in the CNT channel. Multiple input spikes induce excitatory or inhibitory postsynaptic currents via excitatory or inhibitory CNT synapses, which flow toward an I&F circuit to trigger output spikes. The dynamic transfer function between the input and output spikes of the neuromorphic module is analyzed. The module could potentially be scaled up to emulate biological neural networks and their functions.
机译:我们报告了由p型碳纳米管(CNT)突触和集成和发射(I&F)电路组成的模拟神经形态模块。 CNT突触具有场效应晶体管结构,其具有随机CNT网络作为其沟道,并具有注入有铟离子的氧化铝介电层作为其栅极。施加在栅极上的正电压脉冲(尖峰)将电子吸引到栅极介电层的缺陷部位,并且在去除脉冲之后,被释放的电子逐渐释放。电子会改变空穴浓度,并在CNT通道中引发动态的突触后电流。多个输入尖峰会通过兴奋性或抑制性CNT突触感应出兴奋性或抑制性突触后电流,这些电流会流向I&F电路以触发输出尖峰。分析了神经形态模块的输入和输出尖峰之间的动态传递函数。该模块可能会按比例放大以模拟生物神经网络及其功能。

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