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Scaling in complex systems: a link between the dynamics of networks and growing interfaces

机译:在复杂系统中扩展:网络动态与不断增长的接口之间的链接

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摘要

We consider growing interfaces as dynamical networks whose nodes are the discrete points of the interface and the edges the physical interactions among them. We map the points of the interface formed at each time into a graph by means of a visibility algorithm. As the corresponding interfaces grow, their visibility graphs change over time. We show that the visibility graphs are all scale free for each time. We use the variance of the node degrees as a measure of the dynamical properties of these graphs. This magnitude reveals an unexpected scaling behaviour of these graphs in both the number of nodes and time. This enables to define three robust exponents that characterize any type of dynamics with more detail than the classical scaling analysis applied directly to the physical interfaces. To check the feasibility of this approach we study and classify six different dynamical processes and estimate their critical exponents. We conclude that the dynamics of physical systems far from equilibrium can be determined by its corresponding visibility network. Indeed, this methodology is able to discern among dynamical processes that hitherto have been classified in the same universality class according to the scaling analysis of their interfaces.
机译:我们认为增长的接口是动态网络,其节点是接口的离散点,边缘是接口之间的物理交互。我们借助可见性算法将每次形成的界面点映射为图形。随着相应界面的增长,其可见性图会随着时间而变化。我们显示可见度图每次都是无标度的。我们使用节点度的方差来衡量这些图的动力学特性。这个大小揭示了在节点数和时间上这些图的意外缩放行为。与直接应用于物理接口的经典缩放分析相比,这可以定义三个健壮的指数来表征任何类型的动力学,并且具有更多的细节。为了检查这种方法的可行性,我们研究和分类了六个不同的动力学过程,并估计了它们的关键指数。我们得出结论,远离平衡的物理系统的动力学可以由其相应的可见性网络确定。实际上,该方法论能够根据它们的接口的缩放分析,在迄今为止被分类为同一通用性类别的动力学过程中进行区分。

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