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Enhanced logical stochastic resonance under periodic forcing

机译:周期性强迫下增强的逻辑随机共振

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It was demonstrated recently that noise in an optimal window allows a bistable system to operate reliably as reconfigurable logic gates (Murali et al., 2009) [1 ], as well as a memory device (Kohar and Sinha, 2012) [11]. Namely, in a range of moderate noise, the system can operate flexibly, both as a NAND/AND/OR/NOR gate and a Set Reset latch. Here we demonstrate how the width of the optimal noise window can be increased by utilizing the constructive interplay of noise and periodic forcing, namely noise in conjunction with a periodic drive yields consistent logic outputs for all noise strengths below a certain threshold. Thus we establish that in scenarios where noise level is below the minimum threshold required for logical stochastic resonance (or stochastic resonance in general), we can add a periodic forcing to obtain the desired effects. Lastly, we also show how periodic forcing reduces the switching time, leading to faster operation of devices and lower latency effects.
机译:最近证明,在最佳窗口中的噪声允许双稳态系统作为可重构逻辑门(Murali等,2009)[1]以及存储设备(Kohar和Sinha,2012)[11]可靠地运行。即,在适度的噪声范围内,该系统可以作为NAND / AND / OR / NOR门和置位复位锁存器灵活运行。在这里,我们演示了如何通过利用噪声和周期性强制的建设性相互作用来增加最佳噪声窗口的宽度,即,噪声与周期性驱动相结合,可为低于某个阈值的所有噪声强度提供一致的逻辑输出。因此,我们确定,在噪声水平低于逻辑随机共振(或一般而言,随机共振)所需的最小阈值的情况下,我们可以添加周期性强制以获得所需的效果。最后,我们还展示了周期性强制如何减少切换时间,从而加快设备操作速度并降低延迟效果。

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