de la Casa M A, de la Rubia F J, Ivanov Plamen Ch
Departamento Física Fundamental, Universidad Nacional de Educación a Distancia, c/ Senda del Rey 9, Madrid, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 May;75(5 Pt 1):051923. doi: 10.1103/PhysRevE.75.051923. Epub 2007 May 30.
We show that introducing periodic planar fronts with long excitation duration can lead to spiral attenuation. The attenuation occurs periodically over cycles of several planar fronts, forming a variety of complex spatiotemporal patterns. We find that these attenuation patterns occur only at specific phases of the descending fronts relative to the rotational phase of the spiral. These patterns fall into two general classes, each defined by a specific expression for the number of attenuated spirals per cycle of planar fronts, and represented by a structured diagram in parameter space. The spiral attenuation patterns we observe remain stable in time and do not change during the evolution of the system.
我们表明,引入具有长激发持续时间的周期性平面波前可导致螺旋波衰减。衰减在几个平面波前的周期内周期性地发生,形成各种复杂的时空模式。我们发现,这些衰减模式仅在下降波前相对于螺旋波旋转相位的特定相位出现。这些模式分为两大类,每一类都由平面波前每个周期内衰减螺旋波数量的特定表达式定义,并由参数空间中的结构化图表示。我们观察到的螺旋波衰减模式在时间上保持稳定,并且在系统演化过程中不会改变。