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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Stochastic Resonance under Two-Parameter Modulation in a Chemical Model System
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Stochastic Resonance under Two-Parameter Modulation in a Chemical Model System

机译:化学模型系统中两参数调制下的随机共振

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Stochastic resonance (SR) is demonstrated under two-parameter modulation in a model of the photosensitive Belousov-Zhabotinsky reaction in a flow system. Light flux and a flow rate are two control parameters in the model, and modulate a focal steady state close to a Hopf bifurcation simultaneously. Addition of noise to the light flux gives rise to SR whose behavior depends on the periods of and phase difference in the two modulaions. Compared with one-parameter modulation by the light flux, the additional flow rate modulation results in both increase and decrease in the resonance, strong resonance with a period different from that of a signal, or suppressed resonance. These computational results are interpreted by a threshold scenario of SR applied to the two-parameter system. The effect of the flow rate modulation on SR in the photosensitive system is also studied from the viewpoint of the peristaltic effect of a pump.
机译:在流动系统中的光敏Belousov-Zhabotinsky反应模型中,在两参数调制下证明了随机共振(SR)。光通量和流量是模型中的两个控制参数,并且同时调制靠近Hopf分叉的焦点稳态。将噪声添加到光束中会产生SR,SR的行为取决于两个模块的周期和相位差。与通过光束进行的一参量调制相比,附加的流量调制会导致共振的增加和减少,与信号周期不同的强共振或抑制共振。这些计算结果由适用于两参数系统的SR阈值方案解释。从泵的蠕动效应的角度,还研究了流量调节对光敏系统中SR的影响。

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