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竞争帮派的出现、生存和隔离。

Emergence, survival, and segregation of competing gangs.

机构信息

Department of Condensed Matter Physics, University of Zaragoza, 50009 Zaragoza, Spain.

GOTHAM lab, Institute for Biocomputation and Physics of Complex Systems (BIFI), University of Zaragoza, 50018 Zaragoza, Spain.

出版信息

Chaos. 2022 Aug;32(8):083114. doi: 10.1063/5.0084972.

Abstract

In this paper, we approach the phenomenon of criminal activity from an infectious perspective by using tailored compartmental agent-based models that include the social flavor of the mechanisms governing the evolution of crime in society. Specifically, we focus on addressing how the existence of competing gangs shapes the penetration of crime. The mean-field analysis of the model proves that the introduction of dynamical rules favoring the simultaneous survival of both gangs reduces the overall number of criminals across the population as a result of the competition between them. The implementation of the model in networked populations with homogeneous contact patterns reveals that the evolution of crime substantially differs from that predicted by the mean-field equations. We prove that the system evolves toward a segregated configuration where, depending on the features of the underlying network, both gangs can form spatially separated clusters. In this scenario, we show that the beneficial effect of the coexistence of two gangs is hindered, resulting in a higher penetration of crime in the population.

摘要

在本文中,我们从传染病的角度来研究犯罪现象,使用定制的房室基于主体的模型,这些模型包括了社会机制在犯罪演变中的作用。具体来说,我们专注于研究竞争帮派的存在如何影响犯罪的渗透。模型的平均场分析证明,引入有利于两个帮派同时生存的动态规则会导致由于它们之间的竞争,整个种群中罪犯的数量减少。在具有同质接触模式的网络种群中实现模型表明,犯罪的演变与平均场方程预测的有很大不同。我们证明,系统会朝着一种隔离的配置演变,在这种配置中,根据基础网络的特征,两个帮派都可以形成空间上分离的集群。在这种情况下,我们表明两个帮派共存的有益效果会受到阻碍,导致人口中犯罪的渗透程度更高。

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