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爆炸渗流转变的有限尺寸标度理论。

Finite-size scaling theory for explosive percolation transitions.

作者信息

Cho Y S, Kim S-W, Noh J D, Kahng B, Kim D

机构信息

Department of Physics and Astronomy, Seoul National University, Seoul 151-747, Korea.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Oct;82(4 Pt 1):042102. doi: 10.1103/PhysRevE.82.042102. Epub 2010 Oct 8.

Abstract

The finite-size scaling (FSS) theory for continuous phase transitions has been useful in determining the critical behavior from the size-dependent behaviors of thermodynamic quantities. When the phase transition is discontinuous, however, FSS approach has not been well established yet. Here, we develop a FSS theory for the explosive percolation transition arising in the Erdős and Rényi model under the Achlioptas process. A scaling function is derived based on the observed fact that the derivative of the curve of the order parameter at the critical point t(c) diverges with system size in a power-law manner, which is different from the conventional one based on the divergence of the correlation length at t(c). We show that the susceptibility is also described in the same scaling form. Numerical simulation data for different system sizes are well collapsed on the respective scaling functions.

摘要

用于连续相变的有限尺寸标度(FSS)理论,在根据热力学量的尺寸依赖行为确定临界行为方面很有用。然而,当相变是不连续的时候,FSS方法尚未得到很好的确立。在此,我们针对在阿赫利奥普塔斯过程下的埃尔德什-雷尼模型中出现的爆发性渗流转变,开发了一种FSS理论。基于在临界点t(c)处序参量曲线的导数随系统尺寸以幂律方式发散这一观察事实,推导出了一个标度函数,这与基于在t(c)处关联长度发散的传统标度函数不同。我们表明,磁化率也能用相同的标度形式来描述。不同系统尺寸的数值模拟数据很好地塌缩到各自的标度函数上。

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