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SCERPA: A Self-Consistent Algorithm for the Evaluation of the Information Propagation in Molecular Field-Coupled Nanocomputing

机译:SCERPA:一种自我一致的算法,用于评估分子场耦合纳米电脑中的信息传播

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摘要

Among the emerging technologies that are intended to outperform the current CMOS technology, the field-coupled nanocomputing (FCN) paradigm is one of the most promising. The molecular quantum-dot cellular automata (MQCA) has been proposed as possible FCN implementation for the expected very high device density and possible room temperature operations. The digital computation is performed via electrostatic interactions among nearby molecular cells, without the need for charge transport, extremely reducing the power dissipation. Due to the lack of mature analysis and design methods, especially from an electronics standpoint, few attempts have been made to study the behavior of logic circuits based on real molecules, and this reduces the design capability. In this article, we propose a novel algorithm, named self-consistent electrostatic potential algorithm (SCERPA), dedicated to the analysis of molecular FCN circuits. The algorithm evaluates the interaction among all molecules in the system using an iterative procedure. It exploits two optimizations modes named Interaction Radius and Active Region which reduce the computational cost of the evaluation, enabling SCERPA to support the simulation of complex molecular FCN circuits and to characterize consequentially the technology potentials. The proposed algorithm fulfills the need for modeling the molecular structures as electronic devices and provides important quantitative results to analyze the information propagation, motivating and supporting further research regarding molecular FCN circuits and eventual prototype fabrication.
机译:在旨在优于当前CMOS技术的新兴技术中,场耦合纳米划分(FCN)范式是最有前途的一种。已经提出了分子量子点蜂窝自动机(MQCA)作为预期的非常高的装置密度和可能的室温操作的可能FCN实现。数字计算通过附近的分子电池之间的静电相互作用进行,而不需要电荷传输,极大地降低功耗。由于缺乏成熟的分析和设计方法,特别是来自电子的角度,已经采取了很少的尝试,以基于实际分子研究逻辑电路的行为,这降低了设计能力。在本文中,我们提出了一种新颖的算法,名为自我一致的静电潜在算法(SCERPA),专用于分子FCN电路的分析。该算法使用迭代过程评估系统中所有分子之间的相互作用。它利用了名为交互半径和有源区域的两种优化模式,这降低了评估的计算成本,使得SCERPA能够支持复杂的分子FCN电路的模拟,并表征了所构思的技术电位。该算法满足了将分子结构建模为电子设备的需要,并提供重要的定量结果,以分析关于分子FCN电路和最终原型制造的信息传播,激励和支持进一步研究。

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