Robb D T, Rikvold P A, Berger A, Novotny M A
School of Computational Science, Florida State University, Tallahassee, Florida 32306, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Aug;76(2 Pt 1):021124. doi: 10.1103/PhysRevE.76.021124. Epub 2007 Aug 30.
The two-dimensional kinetic Ising model, when exposed to an oscillating applied magnetic field, has been shown to exhibit a nonequilibrium, second-order dynamic phase transition (DPT), whose order parameter Q is the period-averaged magnetization. It has been established that this DPT falls in the same universality class as the equilibrium phase transition in the two-dimensional Ising model in zero applied field. Here we study the scaling of the dynamic order parameter with respect to a nonzero, period-averaged, magnetic "bias" field, H(b) for a DPT produced by a square-wave applied field. We find evidence that the scaling exponent, delta(d), of H(b) at the critical period of the DPT is equal to the exponent for the critical isotherm, delta(e), in the equilibrium Ising model. This implies that H(b) is a significant component of the field conjugate to Q. A finite-size scaling analysis of the dynamic order parameter above the critical period provides further support for this result. We also demonstrate numerically that, for a range of periods and values of H(b) in the critical region, a fluctuation-dissipation relation (FDR), with an effective temperature T(eff)(T,P,H0) depending on the period, and possibly the temperature and field amplitude, holds for the variables Q and H(b). This FDR justifies the use of the scaled variance of Q as a proxy for the nonequilibrium susceptibility, partial differential Q/partial differential H(b), in the critical region.
二维动力学伊辛模型在受到振荡外磁场作用时,已被证明会呈现出非平衡的二阶动态相变(DPT),其序参量Q为周期平均磁化强度。已经确定,这种DPT与零外场下二维伊辛模型中的平衡相变属于同一普适类。在此,我们研究了由方波外场产生的DPT中,动态序参量相对于非零的、周期平均的磁“偏置”场H(b)的标度关系。我们发现有证据表明,在DPT的临界周期处,H(b)的标度指数δ(d)等于平衡伊辛模型中临界等温线的指数δ(e)。这意味着H(b)是与Q共轭的场的一个重要分量。对临界周期以上的动态序参量进行有限尺寸标度分析,为这一结果提供了进一步支持。我们还通过数值方法证明,在临界区域内,对于一系列周期和H(b)值,变量Q和H(b)满足一个涨落耗散关系(FDR),其有效温度T(eff)(T,P,H0)取决于周期,可能还取决于温度和场幅。这个FDR证明了在临界区域使用Q的标度方差作为非平衡磁化率∂Q/∂H(b)的替代是合理的。