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Statistical physics of human cooperation

机译:统计物理的人性合作

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Extensive cooperation among unrelated individuals is unique to humans, who often sacrifice personal benefits for the common good and work together to achieve what they are unable to execute alone. The evolutionary success of our species is indeed due, to a large degree, to our unparalleled other-regarding abilities. Yet, a comprehensive understanding of human cooperation remains a formidable challenge. Recent research in the social sciences indicates that it is important to focus on the collective behavior that emerges as the result of the interactions among individuals, groups, and even societies. Non-equilibrium statistical physics, in particular Monte Carlo methods and the theory of collective behavior of interacting particles near phase transition points, has proven to be very valuable for understanding counterintuitive evolutionary outcomes. By treating models of human cooperation as classical spin models, a physicist can draw on familiar settings from statistical physics. However, unlike pairwise interactions among particles that typically govern solid-state physics systems, interactions among humans often involve group interactions, and they also involve a larger number of possible states even for the most simplified description of reality. The complexity of solutions therefore often surpasses that observed in physical systems. Here we review experimental and theoretical research that advances our understanding of human cooperation, focusing on spatial pattern formation, on the spatiotemporal dynamics of observed solutions, and on self organization that may either promote or hinder socially favorable states. (C) 2017 Elsevier B.V. All rights reserved.
机译:无关个人之间的广泛合作对人类来说是独一无二的,他们往往为共同的善意牺牲个人利益,并共同努力实现他们无法单独执行的事情。我们物种的进化成功确实在很大程度上到了我们无与伦比的其他关于的能力。然而,对人类合作的全面了解仍然是一个强大的挑战。最近的社会科学研究表明,重点关注集体行为,以各位,群体,甚至社会之间的互动而出现。非平衡统计物理学,特别是蒙特卡罗方法和相互作用颗粒的集体行为理论,已经证明对理解违反直接进化结果非常有价值。通过将人类合作模型视为典型自旋模型,物理学家可以从统计物理学中汲取熟悉的环境。然而,与通常控制固态物理系统的粒子之间的成对相互作用不同,人类之间的相互作用通常涉及组相互作用,并且即使对于现实的最简化的描述,它们也涉及更多的可能状态。因此,解决方案的复杂性通常在物理系统中观察到的差异。在这里,我们审查了实验和理论研究,推进了我们对人类合作的理解,重点是观察到的解决方案的时空动态,以及可以促进或阻碍社会有利的国家的自我组织。 (c)2017 Elsevier B.v.保留所有权利。

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