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Single-Electron Devices and Circuits Utilizing Stochastic Operation for Intelligent Information Processing

Single-Electron Devices and Circuits Utilizing Stochastic Operation for Intelligent Information Processing
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Author(s): Takashi Morie (Kyushu Institute of Technology, Japan)
Copyright: 2009
Volume: 1
Issue: 2
Pages: 28
Source title: International Journal of Nanotechnology and Molecular Computation (IJNMC)
Editor(s)-in-Chief: Bruce MacLennan (University of Tennessee - Knoxville, USA)and Keshav Deo Verma (S.V. (P.G.) College, India)
DOI: 10.4018/jnmc.2009040101

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Abstract

The single-electron circuit technology should aim at developing information processing systems using the intrinsic properties of single-electron devices. The operation principles of single-electron devices are completely different from that of conventional CMOS devices, but both devices should co-exist in the information processing systems. In this paper, according to a scenario for achieving large-scale integrated systems of single-electron devices, some single-electron devices and circuits utilizing stochastic operation for associative processing and a spiking neuron model are described.

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