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首页> 外文期刊>Acta Physica Polonica >Monte Carlo Studies of the p-Spin Models on Scale-Free Hypernetworks
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Monte Carlo Studies of the p-Spin Models on Scale-Free Hypernetworks

机译:无标度超网络上p旋转模型的蒙特卡洛研究

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Results of Monte Carlo simulations of p-spin models on scale-free hypernetworks are presented. The hypernetworks are obtained using the preferential attachment algorithm, the spins are located in the nodes and the hyperedges connecting p nodes correspond to non-zero ferromagnetic interactions involving p spins. Such models show high degeneracy of the ground state: apart from the ferromagnetic state, depending on the parameters of the preferential attachment algorithm leading to different topologies of the obtained hypernetworks, there are several or even infinitely many disordered (glassy) states with the same energy. For various network topologies quantities such as the specific heat or magnetic susceptibility show maxima as functions of the temperature, which suggests the occurrence of the glassy or ferromagnetic phase transition. The models under study may serve as a starting point for modelling various forms of cooperation in social and economic sciences involving many-body rather than two-body interactions.
机译:提出了无标度超网络上p旋转模型的Monte Carlo模拟结果。使用优先附着算法获得超网络,自旋位于节点中,连接p个节点的超边对应于涉及p个自旋的非零铁磁相互作用。这样的模型显示出基态的高度简并性:除了铁磁态之外,取决于导致获得的超网络的拓扑不同的优先附着算法的参数,还存在具有相同能量的数个或什至无限多个无序(玻璃态)态。对于各种网络拓扑,诸如比热或磁化率之类的量显示出最大值随温度的变化,这表明发生了玻璃状或铁磁相变。所研究的模型可以作为对涉及多人互动而非两人互动的社会科学和经济科学中各种形式的合作进行建模的起点。

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