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由极化电场控制的螺旋波漂移。

Drift of spiral waves controlled by a polarized electric field.

作者信息

Chen Jiang-Xing, Zhang Hong, Li You-Quan

机构信息

Zhejiang Institute of Modern Physics and Department of Physics, Zhejiang University, Hangzhou 310027, China.

出版信息

J Chem Phys. 2006 Jan 7;124(1):14505. doi: 10.1063/1.2145754.

Abstract

The drift behavior of spiral waves under the influence of a polarized electric field is investigated in the light that both the polarized electric field and the spiral waves possess rotation symmetry. Numerical simulations of a reaction-diffusion model show that the drift velocity of the spiral tip can be controlled by changing the polarization mode of the polarized electric field and some interesting drift phenomena are observed. When the electric field is circularly polarized and its rotation follows that of the spiral, the drift speed of the spiral tip reaches its maximal value. On the contrary, opposite rotation between the spiral and electric field locks the drift of the spiral tip. Analytical results based on the weak deformation approximation are consistent with the numerical results. We hope that our theoretical results will be observed in experiments, such as the Belousov-Zhabotinsky reaction.

摘要

鉴于极化电场和螺旋波都具有旋转对称性,研究了极化电场影响下螺旋波的漂移行为。一个反应扩散模型的数值模拟表明,通过改变极化电场的极化模式可以控制螺旋波尖端的漂移速度,并观察到了一些有趣的漂移现象。当电场为圆极化且其旋转方向与螺旋波一致时,螺旋波尖端的漂移速度达到最大值。相反,螺旋波与电场的反向旋转会锁定螺旋波尖端的漂移。基于弱变形近似的分析结果与数值结果一致。我们希望我们的理论结果能在诸如贝洛索夫 - 扎博廷斯基反应等实验中得到验证。

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