Non-boolean computing based on linear waves and oscillators

G. Csaba, Á. Papp, W. Porod, R. Yeniceri
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引用次数: 12

Abstract

We investigate, how linear or weakly nonlinear oscillatory systems (coupled nanoscale oscillators and propagating spin-waves) can be used as non-Boolean computing systems. We study two model systems: nearest-neighbor connected harmonic oscillators and propagating spin-waves. We argue that these systems may realize efficient co-processors for some demanding applications (image processing, associative memories, scientific computations), where digital CMOS solutions are notably inefficient. Wave-based processing architectures may use emerging nano-scale oscillators as device components, potentially surpassing end-of-roadmap CMOS performance.
基于线性波和振子的非布尔计算
我们研究了线性或弱非线性振荡系统(耦合纳米级振荡和传播自旋波)如何用作非布尔计算系统。研究了两种模型系统:最近邻连通谐振子和传播自旋波。我们认为,这些系统可以为一些要求苛刻的应用(图像处理,联想存储器,科学计算)实现高效的协处理器,其中数字CMOS解决方案效率低下。基于波的处理架构可能使用新兴的纳米级振荡器作为器件组件,有可能超越路线图末端的CMOS性能。
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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