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Intrinsic noise alters the frequency spectrum of mesoscopic oscillatory chemical reaction systems

机译:本征噪声会改变介观振荡化学反应系统的频谱

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摘要

Mesoscopic oscillatory reaction systems, for example in cell biology, can exhibit stochastic oscillations in the form of cyclic random walks even if the corresponding macroscopic system does not oscillate. We study how the intrinsic noise from molecular discreteness influences the frequency spectrum of mesoscopic oscillators using as a model system a cascade of coupled Brusselators away from the Hopf bifurcation. The results show that the spectrum of an oscillator depends on the level of noise. In particular, the peak frequency of the oscillator is reduced by increasing noise, and the bandwidth increased. Along a cascade of coupled oscillators, the peak frequency is further reduced with every stage and also the bandwidth is reduced. These effects can help understand the role of noise in chemical oscillators and provide fingerprints for more reliable parameter identification and volume measurement from experimental spectra.
机译:即使在相应的宏观系统不振荡的情况下,例如在细胞生物学中的介观振荡反应系统也可能表现出周期性随机游动形式的随机振荡。我们使用耦合霍塞尔分叉远离的耦合布鲁塞尔振子作为模型系统,研究了分子离散性引起的内在噪声如何影响介观振荡器的频谱。结果表明,振荡器的频谱取决于噪声水平。特别地,通过增加噪声来降低振荡器的峰值频率,并且增加带宽。沿着级联的耦合振荡器,峰值频率在每一级都会进一步降低,带宽也会降低。这些效应可以帮助理解噪声在化学振荡器中的作用,并提供指纹,以便更可靠地进行参数鉴定和根据实验光谱进行体积测量。

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