Papanikolaou Nikos, Vaccario Giacomo, Hormann Erik, Lambiotte Renaud, Schweitzer Frank
ETH Zurich, Weinbergstrasse 58, 8092 Zurich, Switzerland.
Mathematical Institute, University of Oxford, Woodstock Road, Oxford OX2 6GG, United Kingdom.
Phys Rev E. 2022 May;105(5-1):054307. doi: 10.1103/PhysRevE.105.054307.
We study the effect of group interactions on the emergence of consensus in a spin system. Agents with discrete opinions {0,1} form groups. They can change their opinion based on their group's influence (voter dynamics), but groups can also split and merge (adaptation). In a hypergraph, these groups are represented by hyperedges of different sizes. The heterogeneity of group sizes is controlled by a parameter β. To study the impact of β on reaching consensus, we provide extensive computer simulations and compare them with an analytic approach for the dynamics of the average magnetization. We find that group interactions amplify small initial opinion biases, accelerate the formation of consensus, and lead to a drift of the average magnetization. The conservation of the initial magnetization, known for basic voter models, is no longer obtained.
我们研究了自旋系统中群体相互作用对共识出现的影响。具有离散意见{0,1}的主体形成群体。它们可以根据群体的影响改变自己的意见(投票者动态),但群体也可以分裂和合并(适应)。在超图中,这些群体由不同大小的超边表示。群体大小的异质性由参数β控制。为了研究β对达成共识的影响,我们进行了广泛的计算机模拟,并将其与平均磁化强度动力学的解析方法进行比较。我们发现群体相互作用放大了初始的小意见偏差,加速了共识的形成,并导致平均磁化强度的漂移。基本投票者模型中已知的初始磁化强度守恒不再成立。