论文标题

从生命的起源到大流行:复杂系统中的新兴现象

From the origin of life to pandemics: Emergent phenomena in complex systems

论文作者

Artime, Oriol, De Domenico, Manlio

论文摘要

当大量相似实体之间彼此之间以及与其环境相互作用时,可能会自发地出现较高时空尺度的意外结果。这种被称为出现的非平凡现象是从物理到生物学和社会的各种独特的复杂系统的特征,并且通常与集体行为有关。它是普遍存在的,从非生命的实体(例如振荡器)在特定条件下同步的振荡器到生物,例如鸟类蜂拥而至或鱼类教育。尽管有足够的现象学证据表明系统的出现特性存在,但对出现研究的中心理论问题仍未得到解答,例如缺乏对现象的广泛认可,严格的严格定义或鉴定有利于出现的基本物理条件。我们在这里提供了有关出现现象的一般概述,并草拟了有关该主题的当前和未来挑战。我们的简短评论还可以介绍主题问题“在复杂的物理和社会技术系统中的新兴现象:从细胞到社会”,在那里我们提供了解决问题中的内容的综合,并概述了它们如何与这些挑战的联系,涵盖了这些挑战,涵盖了当前对生命的理解,以及对感染性偏见的大规模传播的当前理解的进步。

When a large number of similar entities interact among each other and with their environment at a low scale, unexpected outcomes at higher spatio-temporal scales might spontaneously arise. This nontrivial phenomenon, known as emergence, characterizes a broad range of distinct complex systems -- from physical to biological and social ones -- and is often related to collective behavior. It is ubiquitous, from non-living entities such as oscillators that under specific conditions synchronize, to living ones, such as birds flocking or fish schooling. Despite the ample phenomenological evidence of the existence of systems' emergent properties, central theoretical questions to the study of emergence remain still unanswered, such as the lack of a widely accepted, rigorous definition of the phenomenon or the identification of the essential physical conditions that favour emergence. We offer here a general overview of the phenomenon of emergence and sketch current and future challenges on the topic. Our short review also serves as an introduction to the Theme Issue "Emergent phenomena in complex physical and socio-technical systems: from cells to societies", where we provide a synthesis of the contents tackled in the Issue and outline how they relate to these challenges, spanning from current advances in our understanding on the origin of life to the large-scale propagation of infectious diseases.

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