A Recursive Growing & Featuring Mechanism for Nanocomputing Structures

M. Malita, G. Stefan
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Abstract

The huge amounts of physical possibilities offered by the emerging nanotechnologies must be accompanied, beyond the uniform growing mechanisms supposed by the current serial and/or parallel extensions, by an appropriate structuring mechanism able to support efficiently the increasing functional demands. A recursive growing mechanism is proposed for the upcoming Nano-Era. The current growing mechanism involves only pure quantitative aspects. We consider as mandatory, for the very big sized systems, another mechanism which interleaves the quantitative aspects with the functional ones. Because the computational parallelism is implicit for the big sized systems, the growing mechanism must be supported also by an appropriate computational model. For the current systems we started from gates. For Nano-Era structuring mechanism we will start from cellular automata. The main difference is that for nanoarchitectures the growing mechanism and the featuring mechanism are unified in an unique recursive mechanism.
纳米计算结构的递归生长与特征机制
除了当前串行和/或并行扩展所假定的统一生长机制之外,新兴纳米技术所提供的大量物理可能性必须伴随着一种适当的结构机制,能够有效地支持不断增长的功能需求。针对即将到来的纳米时代提出了一种递归生长机制。目前的增长机制只涉及纯数量方面。对于非常大的系统,我们认为必须有另一种将数量方面与功能方面交织在一起的机制。由于大系统的计算并行性是隐式的,因此增长机制也必须得到适当的计算模型的支持。对于目前的系统,我们是从门开始的。对于纳米时代的结构机制,我们将从元胞自动机开始。纳米结构的主要区别在于,生长机制和特征机制统一在一个独特的递归机制中。
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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