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具有起搏器的化学振荡器链中的同步现象。

Entrainment in a chemical oscillator chain with a pacemaker.

作者信息

Fukuda Hirokazu, Tamari Naoki, Morimura Hiroki, Kai Shoichi

机构信息

Department of Applied Quantum Physics and Nuclear Engineering, Faculty of Engineering, Graduate School of Systems Life Sciences, Kyushu University, Fukuoka 812-8581, Japan.

出版信息

J Phys Chem A. 2005 Dec 15;109(49):11250-4. doi: 10.1021/jp052717k.

Abstract

Entrainment by a pacemaker was investigated experimentally and numerically in a chain of chemical oscillators using coupled discrete Belousov-Zhabotinsky reaction oscillators. The spontaneous frequency of each oscillator depended on the concentration of catalyst ions. The coupling strengths among the nearest neighbor oscillators were controlled by changing the spacing distance (d) between beads. When the coupling strength was sufficiently strong, the pacemaker entrained other oscillators in the chain. Subsequently, the trigger waves propagating from a pacemaker were observed. The range of trigger wave propagation area, i.e., the number of entrained oscillators, depended on d. Numerical simulation for the system described the experimental results well. Furthermore, photic noise maximized the strength of entrainment at an optimal noise intensity.

摘要

在由耦合离散的贝洛索夫 - 扎博廷斯基反应振荡器组成的化学振荡器链中,通过实验和数值方法研究了起搏器的同步现象。每个振荡器的自发频率取决于催化剂离子的浓度。通过改变珠子之间的间距距离(d)来控制最近邻振荡器之间的耦合强度。当耦合强度足够强时,起搏器使链中的其他振荡器同步。随后,观察到从起搏器传播的触发波。触发波传播区域的范围,即被同步的振荡器数量,取决于d。对该系统的数值模拟很好地描述了实验结果。此外,光噪声在最佳噪声强度下使同步强度最大化。

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