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Cascading of Nanomechanical Resonator Logic

机译:纳米机械谐振器逻辑的级联

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摘要

Nanomechanical systems have been proposed as an alternative computing platform for high radiation environments, where semiconductor electronics traditionally fail, as well as to allow improved gate densities and energy consumption. While there have been numerous demonstrations of individual nanomechanical logic gates leveraging the Duffing nonlinearity, the development of useful nanomechanical logic circuits depends strongly on the ability to cascade multiple logic gates. Here we show theoretically that cascading nanomechanical logic gates, where the output of one gate is fed into the input of another, is a complex problem due to the transient dynamics of the collective system. These transient behaviours can lead to undesired bit flips, which precludes cascading altogether. We then show that this issue can be circumvented by carefully initialising the system prior to computation. We illustrate these salient features through the modelled dynamics of two cascaded nanomechanical NAND gates.
机译:纳米机械系统已被提议作为高辐射环境的替代计算平台,在这些环境中,半导体电子元件传统上会失效,并允许提高栅极密度和能耗。虽然已经有许多利用Duffing非线性的单个纳米机械逻辑门的演示,但有用的纳米机械逻辑电路的开发在很大程度上取决于级联多个逻辑门的能力。在这里,我们从理论上表明,级联纳米机械逻辑门,其中一个门的输出被馈入另一个门的输入,由于集体系统的瞬态动力学,是一个复杂的问题。这些瞬态行为可能导致不希望的位翻转,从而完全排除级联。然后,我们表明,可以通过在计算之前仔细初始化系统来规避这个问题。我们通过两个级联纳米机械NAND门的建模动力学来说明这些显着特征。

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