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Reliable Logic Circuit Elements that Exploit Nonlinearity in the Presence of a Noise Floor

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PHYSICAL REVIEW LETTERS
卷 102, 期 10, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.102.104101

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  1. Office of Naval Research [N000140211019, N000148WX20330AA]

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The response of a noisy nonlinear system to deterministic input signals can be enhanced by cooperative phenomena. We show that when one presents two square waves as input to a two-state system, the response of the system can produce a logical output (NOR/OR) with a probability controlled by the noise intensity. As one increases the noise (for fixed threshold or nonlinearity), the probability of the output reflecting a NOR/OR operation increases to unity and then decreases. Changing the nonlinearity (or the thresholds) of the system changes the output into another logic operation (NAND/AND) whose probability displays analogous behavior. The interplay of nonlinearity and noise can yield logic behavior, and the emergent outcome of such systems is a logic gate. This logical stochastic resonance is demonstrated via an experimental realization of a two-state system with two (adjustable) thresholds.

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