Teaching nanotechnology by introducing crossbar-based architecture and quantum-dot cellular automata

Minsu Choi, N. Park
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引用次数: 4

Abstract

The end of photolithography as the driver for Moore's law is predicted within seven to twelve years and six different emerging technologies (mostly nanoscale) are expected to replace the current CMOS-based system integration paradigm. As nanotechnology is emerging, (1) there is a strong need for well-educated nanoscale systems engineers by industry, and (2) research and education efforts are also called to overcome numerous nanoscale systems issues. This paper is to propose a way to teach nanotechnology by introducing two emerging technologies: crossbar-based nanoarchitecture and quantum-dot cellular automata.
透过引入横杆架构及量子点元胞自动机,讲授奈米科技
光刻技术作为摩尔定律的驱动力预计将在7到12年内终结,6种不同的新兴技术(主要是纳米级)有望取代目前基于cmos的系统集成范式。随着纳米技术的兴起,(1)工业界对受过良好教育的纳米级系统工程师有强烈的需求,(2)也需要研究和教育努力来克服许多纳米级系统问题。本文通过介绍两种新兴技术:基于交叉棒的纳米结构和量子点元胞自动机,提出了一种教授纳米技术的方法。
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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