Application of Single Electron Devices Utilizing Stochastic Dynamics

S. Sato, K. Nakajima
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引用次数: 7

Abstract

Single electron devices utilizing the Coulomb blockade phenomenon have attractive features such as extreme low power consumption, one by one electron flow controllability, small device size, etc. However, besides promising applications such as the current standard and charge detection, it is not easy to apply the single electron devices to conventional computational tasks due to its stochastic operation and low amplification capability. Therefore, it is important for us to consider suitable applications of single electron devices. In this paper, we show three applications such as a noise generator, a stochastic neural network, and a charge detector employing stochastic resonance. Trough these applications, we see the advantages of single electron devices and study the direction of applications. [Article copies are available for purchase from InfoSci-on-Demand.com]
随机动力学在单电子器件中的应用
利用库仑阻塞现象的单电子器件具有极低功耗、逐个电子流可控、器件体积小等优点。然而,除了当前标准和电荷检测等有前景的应用外,单电子器件由于其随机操作和低放大能力而不容易应用于传统的计算任务。因此,考虑单电子器件的合适应用对我们来说是很重要的。在本文中,我们展示了三种应用,如噪声发生器、随机神经网络和利用随机共振的电荷检测器。通过这些应用,我们看到了单电子器件的优点,并研究了应用的方向。[文章副本可于infosci-ondemand.com购买]
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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