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Implementation of dynamic dual input multiple output logic gate via resonance in globally coupled Duffing oscillators

机译:通过全局耦合Duffing振荡器谐振实现动态双输入多输出逻辑门的实施

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摘要

have used a system of globally coupled double-well Duffing oscillators under an enhanced resonance condition to design and implement Dual Input Multiple Output (DIMO) logic gates. In order to enhance the resonance, the first oscillator in the globally coupled system alone is excited by two forces out of which one acts as a driving force and the other will be either sub-harmonic or super-harmonic in nature. We report that for an appropriate coupling strength, the second force coherently drives and enhances not only the amplitude of the weak first force to all the coupled systems but also drives and propagates the digital signals if any given to the first system. We then numerically confirm the propagation of any digital signal or square wave without any attenuation under an enhanced resonance condition for an amplitude greater than a threshold value. Further, we extend this idea for computing various logical operations and succeed in designing theoretically DIMO logic gates such as AND/NAND, OR/NOR gates with globally coupled systems. Published by AIP Publishing.
机译:在增强的共振条件下使用了全局耦合的双井Duffing振荡器系统来设计和实现双输入多输出(DIMO)逻辑门。为了增强谐振,单独的全球耦合系统中的第一振荡器被两个力激发出两个力,其中一个动作作为驱动力,另一个是自然的子谐波或超级谐波。我们报告,为了适当的耦合强度,第二力相干地驱动并不仅使弱的第一力的幅度变为所有耦合系统,而且还驱动和传播数字信号,如果给予第一系统。然后,我们在数值上确认任何数字信号或方波的传播,而不会在增强的共振条件下衰减,用于幅度大于阈值。此外,我们扩展了计算各种逻辑操作的想法,并成功地设计理论上DIMO逻辑门,例如和/ NAND,或/或与全局耦合系统的栅极。通过AIP发布发布。

著录项

  • 来源
    《Chaos》 |2017年第8期|共10页
  • 作者单位

    Nehru Mem Coll PG &

    Res Dept Phys Puthanampatti 621007 Tiruchirapalli India;

    Nehru Mem Coll PG &

    Res Dept Phys Puthanampatti 621007 Tiruchirapalli India;

    Bharathidasan Univ Sch Phys Ctr Nonlinear Dynam Tiruchchirappalli 620024 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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