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基于量子点晶体管的计数器中的纳米级倾桶效应。

Nanoscale Tipping Bucket Effect in a Quantum Dot Transistor-Based Counter.

机构信息

Technische Physik and Wilhelm Conrad Röntgen Research Center for Complex Material Systems, Physikalisches Institut, Universität Würzburg , Am Hubland, D-97074 Würzburg, Germany.

Departamento de Física, Universidade Federal de São Carlos , 13565-905, São Carlos, São Paulo, Brazil.

出版信息

Nano Lett. 2017 Apr 12;17(4):2273-2279. doi: 10.1021/acs.nanolett.6b04911. Epub 2017 Mar 20.

Abstract

Electronic circuits composed of one or more elements with inherent memory, that is, memristors, memcapacitors, and meminductors, offer lower circuit complexity and enhanced functionality for certain computational tasks. Networks of these elements are proposed for novel computational paradigms that rely on information processing and storage on the same physical platform. We show a nanoscaled memdevice able to act as an electronic analogue of tipping buckets that allows reducing the dimensionality and complexity of a sensing problem by transforming it into a counting problem. The device offers a well adjustable, tunable, and reliable periodic reset that is controlled by the amounts of transferred quantum dot charges per gate voltage sweep. When subjected to periodic voltage sweeps, the quantum dot (bucket) may require up to several sweeps before a rapid full discharge occurs thus displaying period doubling, period tripling, and so on between self-governing reset operations.

摘要

由具有固有记忆的一个或多个元件(即忆阻器、忆容器和忆感器)组成的电子电路具有更低的电路复杂性和增强的功能,适用于某些计算任务。这些元件的网络被提议用于新型计算范例,这些范例依赖于在同一物理平台上进行信息处理和存储。我们展示了一种纳米级的 mem 器件,它可以作为倾倒桶的电子模拟,通过将传感问题转化为计数问题来降低其维度和复杂性。该器件提供了一种可调节、可调谐且可靠的周期性重置,其由每个栅极电压扫描转移的量子点电荷的数量来控制。当受到周期性电压扫描时,量子点(桶)可能需要经过几次扫描才能快速完全放电,从而在自主重置操作之间显示倍周期、三倍周期等现象。

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