Department of Physics, National Institute of Technology Karnataka, Mangalore 575025, India.
Department of Oral Health Sciences, School of Dentistry, University of Washington, Seattle, Washington 98195, USA.
Chaos. 2023 Jun 1;33(6). doi: 10.1063/5.0145251.
We present the first experimental study of unpinning an excitation wave using a circularly polarized electric field. The experiments are conducted using the excitable chemical medium, the Belousov-Zhabotinsky (BZ) reaction, which is modeled with the Oregenator model. The excitation wave in the chemical medium is charged so that it can directly interact with the electric field. This is a unique feature of the chemical excitation wave. The mechanism of wave unpinning in the BZ reaction with a circularly polarized electric field is investigated by varying the pacing ratio, the initial phase of the wave, and field strength. The chemical wave in the BZ reaction unpins when the electric force opposite the direction of the spiral is equal to or above a threshold. We developed an analytical relation of the unpinning phase with the initial phase, the pacing ratio, and the field strength. This is then verified in experiments and simulations.
我们首次进行了使用圆形偏振电场消除激发波钉扎的实验研究。实验采用可激发生化介质——Belousov-Zhabotinsky(BZ)反应进行,该反应采用 Oregenator 模型进行模拟。化学介质中的激发波被充电,使其能够与电场直接相互作用。这是化学激发波的独特特征。通过改变起搏比、波的初始相位和场强来研究 BZ 反应中圆形偏振电场对波解钉扎的机制。当螺旋方向相反的电场力等于或超过阈值时,BZ 反应中的化学波会解钉扎。我们提出了一个关于解钉扎相位与初始相位、起搏比和场强的解析关系,并在实验和模拟中进行了验证。