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On stochastic complex beam-beam interaction models with Gaussian colored noise

机译:具有高斯色噪声的随机复杂光束相互作用模型

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This paper is to continue our study on complex beam-beam interaction models in particle accelerators with random excitations Y. Xu, W. Xu, G.M. Mahmoud, On a complex beam-beam interaction model with random forcing [Physica A 336 (2004) 347-360]. The random noise is taken as the form of exponentially correlated Gaussian colored noise, and the transition probability density function is obtained in terms of a perturbation expansion of the parameter. Then the method of stochastic averaging based on perturbation technique is used to derive a Fokker-Planck equation for the transition probability density function. The solvability condition and the general transforms using the method of characteristics are proposed to obtain the approximate expressions of probability density function to order epsilon. Also the exact stationary probability density and the first and second moments of the amplitude are obtained, and one can find when the correlation time equals to zero, the result is identical to that derived from the Stratonovich-Khasminskii theorem for the same model under a broad-band excitation in our previous work. (C) 2007 Elsevier B.V. All rights reserved.
机译:本文将继续我们对具有随机激励的粒子加速器中复杂的束流相互作用模型的研究.Y.Xu,W.Xu,G.M. Mahmoud,关于带有随机强迫的复杂的束流相互作用模型[Physica A 336(2004)347-360]。将随机噪声作为指数相关的高斯色噪声的形式,并且根据参数的扰动展开来获得跃迁概率密度函数。然后,采用基于扰动技术的随机平均方法,导出了转移概率密度函数的Fokker-Planck方程。提出了利用特征方法的可解性条件和一般变换,以求出概率密度函数的近似表达式,以对ε进行排序。还获得了精确的平稳概率密度以及振幅的第一和第二矩,并且可以发现当相关时间等于零时,结果与从Stratonovich-Khasminskii定理得出的结果相同,在相同的条件下我们以前的工作中的带激励。 (C)2007 Elsevier B.V.保留所有权利。

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