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Asymmetric bistable systems subject to periodic and stochastic forcing in the strongly nonlinear regime: Switching time distributions - art. no. 016103

机译:非对称双稳态系统在强非线性条件下受到周期性和随机强迫:切换时间分布-艺术。没有。 016103

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摘要

A detailed theoretical analysis of the dynamics of a sinusoidally driven noisy asymmetric bistable system is presented. The results are valid for any two-state system, however, the specific case of the Duffing potential is considered in detail. The dynamics are considered in the weak noise limit, i.e., when the response of the system to the external periodic field is strongly nonlinear. The system asymmetry is created by a nonzero dc component of the external force, and manifests itself as an asymmetry between the mean switching times between the potential wells. We obtain explicit analytic expressions for the whole hierarchy of switching time distributions (including the residence time and return time distributions). We also obtain expressions for the average residence times and describe how they depend on asymmetry, together with an explicit expression for the difference between the residence times in the weak noise limit; the results are presented in the context of using the switching dynamics to detect weak dc target signals. [References: 28]
机译:提出了一个正弦驱动的噪声非对称双稳态系统动力学的详细理论分析。该结果对任何两态系统均有效,但是,将详细考虑达芬势的具体情况。动力学被认为是在弱噪声极限内,即当系统对外部周期场的响应是强非线性时。系统不对称性是由外力的直流分量非零引起的,并表现为势阱之间平均切换时间之间的不对称性。我们获得了交换时间分布(包括停留时间和返回时间分布)的整个层次结构的显式解析表达式。我们还获得了平均停留时间的表达式,并描述了它们如何依赖于不对称性,以及在弱噪声限制下的停留时间之间的差异的明确表达式。在使用开关动力学检测弱直流目标信号的背景下给出了结果。 [参考:28]

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