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Associated relaxation time and intensity correlation function of a bistable system driven by cross-correlation additive and multiplicative coloured noise sources

机译:互相关加性和彩色有色噪声源驱动的双稳态系统的相关弛豫时间和强度相关函数

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摘要

The associated relaxation time and the intensity correlation function of a bistable system driven by an additive and a multiplicative coloured noise with coloured cross-correlation are investigated. Using the Novikov theorem and the projection operator method, the analytic expressions of the stationary probability distribution P-st(x), the relaxation time T-c, and the normalized correlation function C(s) of the system are obtained. The effects of the noise intensity, the cross-correlation strength lambda and the cross-correlation time tau are discussed. By numerical computation, it is found that the cross-correlation strength |lambda| and the quantum noise intensity D decrease the relaxation of the system from unstable points. The cross-correlation time tau delays relaxation of the system from unstable points. The cross-correlation strength lambda and the cross-correlation time tau can alter the effects of the pump noise intensity Q. Thus, the relaxation time T-c is a stochastic resonant phenomenon, and distribution curves exhibit a single-maximum structure.
机译:研究了双稳态系统的相关弛豫时间和强度相关函数,该双稳态系统由具有彩色互相关的加性和乘性彩色噪声驱动。使用Novikov定理和投影算子方法,获得系统的平稳概率分布P-st(x),弛豫时间T-c和归一化相关函数C(s)的解析表达式。讨论了噪声强度,互相关强度λ和互相关时间tau的影响。通过数值计算,发现互相关强度|λ|。量子噪声强度D从不稳定点降低了系统的弛豫。互相关时间tau会延迟系统从不稳定点开始的松弛。互相关强度λ和互相关时间tau可以改变泵浦噪声强度Q的影响。因此,弛豫时间T-c是随机共振现象,并且分布曲线显示出一个最大结构。

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