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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Mean-field critical behavior and ergodicity break in a nonequilibrium one-dimensional rsos growth model
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Mean-field critical behavior and ergodicity break in a nonequilibrium one-dimensional rsos growth model

机译:非平衡一维rsos生长模型中的平均场临界行为和遍历性破坏

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We investigate the nonequilibrium roughening transition of a one-dimensional restricted solid-on-solid model by directly sampling the stationary probability density of a suitable order parameter as the surface adsorption rate varies. The shapes of the probability density histograms suggest a typical GinzburgLandau scenario for the phase transition of the model, and estimates of the "magnetic" exponent seem to confirm its mean-field critical behavior. We also found that the flipping times between the metastable phases of the model scale exponentially with the system size, signaling the breaking of ergodicity in the thermodynamic limit. Incidentally, we discovered that a closely related model not considered before also displays a phase transition with the same critical behavior as the original model. Our results support the usefulness of off-critical histogram techniques in the investigation of nonequilibrium phase transitions. We also briefly discuss in the appendix a good and simple pseudo-random number generator used in our simulations.
机译:我们通过直接采样一个合适的有序参数的平稳概率密度随表面吸附率的变化来研究一维受限固体对固体模型的非平衡粗糙化过渡。概率密度直方图的形状为模型的相变提供了典型的GinzburgLandau方案,“磁”指数的估计似乎证实了其平均场临界行为。我们还发现,模型的亚稳相之间的翻转时间与系统大小成指数比例,这表明在热力学极限中遍历性的打破。顺便说一句,我们发现之前未考虑的紧密相关的模型也显示出与原始模型具有相同临界行为的相变。我们的结果支持非临界直方图技术在非平衡相变研究中的有用性。我们还在附录中简要讨论了我们的仿真中使用的良好且简单的伪随机数生成器。

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