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Generalised Sandpile Dynamics on Artificial and Real-World Directed Networks

机译:人工和真实世界的定向网络上的广义沙堆动力学

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摘要

The main finding of this paper is a novel avalanche-size exponent τ ≈ 1.87 when the generalised sandpile dynamics evolves on the real-world Japanese inter-firm network. The topology of this network is non-layered and directed, displaying the typical bow tie structure found in real-world directed networks, with cycles and triangles. We show that one can move from a strictly layered regular lattice to a more fluid structure of the inter-firm network in a few simple steps. Relaxing the regular lattice structure by introducing an interlayer distribution for the interactions, forces the scaling exponent of the avalanche-size probability density function τ out of the two-dimensional directed sandpile universality class τ = 4/3, into the mean field universality class τ = 3/2. Numerical investigation shows that these two classes are the only that exist on the directed sandpile, regardless of the underlying topology, as long as it is strictly layered. Randomly adding a small proportion of links connecting non adjacent layers in an otherwise layered network takes the system out of the mean field regime to produce non-trivial avalanche-size probability density function. Although these do not display proper scaling, they closely reproduce the behaviour observed on the Japanese inter-firm network.
机译:本文的主要发现是当广义沙堆动力学在真实世界的日本公司间网络上演化时,雪崩大小指数τ≈1.87。该网络的拓扑结构是无层次的和有向的,显示了在现实世界的有向网络中发现的典型的蝴蝶结结构,带有周期和三角形。我们表明,只需几个简单的步骤,就可以从严格分层的规则晶格移动到公司间网络的更流畅的结构。通过引入相互作用的层间分布来放松规则晶格结构,将雪崩大小概率密度函数τ的缩放指数从二维有向沙堆通用性类别τ= 4/3中强制引入平均场通用性类别τ中= 3/2。数值研究表明,这两个类别是定向沙堆上唯一存在的,而不论其底层拓扑如何,只要严格分层即可。在其他分层网络中随机添加一小部分连接非相邻层的链接会使系统脱离平均场机制,从而产生非平凡的雪崩大小概率密度函数。尽管它们没有显示出适当的缩放比例,但它们紧密地再现了日本企业间网络上观察到的行为。

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