Pelissetto Andrea, Vicari Ettore
Dipartimento di Fisica dell'Università di Roma "La Sapienza" and INFN, Sezione di Roma I, I-00185 Rome, Italy.
Dipartimento di Fisica dell'Università di Pisa and INFN, Sezione di Pisa, I-56127 Pisa, Italy.
Phys Rev E. 2017 Jul;96(1-1):012125. doi: 10.1103/PhysRevE.96.012125. Epub 2017 Jul 12.
We investigate the dynamic behavior of finite-size systems close to a first-order transition (FOT). We develop a dynamic finite-size scaling (DFSS) theory for the dynamic behavior in the coexistence region where different phases coexist. This is characterized by an exponentially large time scale related to the tunneling between the two phases. We show that, when considering time scales of the order of the tunneling time, the dynamic behavior can be described by a two-state coarse-grained dynamics. This allows us to obtain exact predictions for the dynamical scaling functions. To test the general DFSS theory at FOTs, we consider the two-dimensional Ising model in the low-temperature phase, where the external magnetic field drives a FOT, and the 20-state Potts model, which undergoes a thermal FOT. Numerical results for a purely relaxational dynamics fully confirm the general theory.
我们研究了接近一级相变(FOT)的有限尺寸系统的动力学行为。我们针对不同相共存的共存区域中的动力学行为,发展了一种动态有限尺寸标度(DFSS)理论。这一区域的特征是与两相之间隧穿相关的指数级大时间尺度。我们表明,当考虑隧穿时间量级的时间尺度时,动力学行为可以用双态粗粒化动力学来描述。这使我们能够获得动力学标度函数的精确预测。为了在一级相变处检验通用的DFSS理论,我们考虑低温相中的二维伊辛模型,其中外部磁场驱动一级相变,以及经历热一级相变的20态Potts模型。纯弛豫动力学的数值结果充分证实了该通用理论。