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首页> 外文期刊>The Journal of Chemical Physics >Gaussian approximations for stochastic systems with delay: Chemical Langevin equation and application to a Brusselator system
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Gaussian approximations for stochastic systems with delay: Chemical Langevin equation and application to a Brusselator system

机译:时滞随机系统的高斯近似:化学兰格文方程及其在Brusselator系统中的应用

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摘要

We present a heuristic derivation of Gaussian approximations for stochastic chemical reaction systems with distributed delay. In particular, we derive the corresponding chemical Langevin equation. Due to the non-Markovian character of the underlying dynamics, these equations are integrodifferential equations, and the noise in the Gaussian approximation is coloured. Following on from the chemical Langevin equation, a further reduction leads to the linear-noise approximation. We apply the formalism to a delay variant of the celebrated Brusselator model, and show how it can be used to characterise noise-driven quasi-cycles, as well as noise-triggered spiking. We find surprisingly intricate dependence of the typical frequency of quasi-cycles on the delay period.
机译:我们提出了具有分布时滞的随机化学反应系统的高斯近似的启发式推导。特别是,我们推导了相应的化学朗格文方程。由于基本动力学的非马尔可夫特性,这些方程是积分微分方程,并且高斯近似中的噪声是有色的。根据化学朗文方程,进一步的减少导致线性噪声近似。我们将形式主义应用于著名的Brusselator模型的延迟变体,并展示如何将其用于表征噪声驱动的准​​周期以及噪声触发的尖峰。我们发现准周期的典型频率对延迟周期的复杂复杂性令人惊讶。

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