Falk Johannes, Mendler Marc, Drossel Barbara
Institut für Festkörperphysik, Technische Universität Darmstadt, Hochschulstr. 6, 64289 Darmstadt, Germany.
PLoS One. 2017 Apr 27;12(4):e0176410. doi: 10.1371/journal.pone.0176410. eCollection 2017.
We investigate the influence of intrinsic noise on stable states of a one-dimensional dynamical system that shows in its deterministic version a saddle-node bifurcation between monostable and bistable behaviour. The system is a modified version of the Schlögl model, which is a chemical reaction system with only one type of molecule. The strength of the intrinsic noise is varied without changing the deterministic description by introducing bursts in the autocatalytic production step. We study the transitions between monostable and bistable behavior in this system by evaluating the number of maxima of the stationary probability distribution. We find that changing the size of bursts can destroy and even induce saddle-node bifurcations. This means that a bursty production of molecules can qualitatively change the dynamics of a chemical reaction system even when the deterministic description remains unchanged.
我们研究了内在噪声对一维动力系统稳定状态的影响,该系统在其确定性版本中呈现出单稳态和双稳态行为之间的鞍结分岔。该系统是施洛格模型的一个修改版本,它是一个仅包含一种分子类型的化学反应系统。通过在自催化产生步骤中引入脉冲,在不改变确定性描述的情况下改变内在噪声的强度。我们通过评估稳态概率分布的最大值数量来研究该系统中单稳态和双稳态行为之间的转变。我们发现改变脉冲的大小可以破坏甚至诱导鞍结分岔。这意味着即使确定性描述保持不变,分子的脉冲式产生也可以定性地改变化学反应系统的动力学。