Hamik Chad T, Steinbock Oliver
Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida 32306-4390, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Apr;65(4 Pt 2A):046224. doi: 10.1103/PhysRevE.65.046224. Epub 2002 Apr 8.
We report experimental results on the dynamics of excitation waves in a modified Belousov-Zhabotinsky reaction. The waves in this system obey nonmonotonic dispersion relations. This anomaly induces the stacking of excitation fronts into patterns with stable interpulse distances. The stacking process creates either a traveling shock structure or a cascade of bunching events in which metastable wave packets are formed. The direction and the speed of the shock are explained in terms of a simple geometrical analysis. We also present experimental evidence for the corresponding instabilities in two-dimensional systems. Here, wave stacking generates atypical structures in the collision of target patterns and wave bunching is accompanied by complex front deformations.
我们报告了关于改进的贝洛索夫-扎博廷斯基反应中激发波动力学的实验结果。该系统中的波服从非单调色散关系。这种异常现象导致激发前沿堆积成具有稳定脉冲间隔的图案。堆积过程产生了行波激波结构或一系列聚束事件,其中形成了亚稳态波包。激波的方向和速度通过简单的几何分析进行了解释。我们还给出了二维系统中相应不稳定性的实验证据。在这里,波的堆积在靶图案碰撞时产生非典型结构,并且波的聚束伴随着复杂的前沿变形。