4.7 Article

Vibrational resonance in a noise-induced structure -: art. no. 011106

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PHYSICAL REVIEW E
卷 66, 期 1, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevE.66.011106

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We report on the effect of vibrational resonance in a spatially extended system of coupled noisy oscillators under the action of two periodic forces, a low-frequency one (signal) and a high-frequency one (carrier). Vibrational resonance manifests itself in the fact that for optimally selected values of high-frequency force amplitude, the response of the system to a low-frequency signal is optimal. This phenomenon is a synthesis of two effects, a noise-induced phase transition leading to bistability, and a conventional vibrational resonance, resulting in the optimization of signal processing. Numerical simulations, which demonstrate this effect for an extended system, can be understood by means of a zero-dimensional effective model. The behavior of this effective model is also confirmed by an experimental realization of an electronic circuit.

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