Paul Subhajit, Das Subir K
Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O., Bangalore 560064, India.
Phys Rev E. 2017 Jul;96(1-1):012105. doi: 10.1103/PhysRevE.96.012105. Epub 2017 Jul 5.
We study far-from-equilibrium dynamics in models of freely cooling granular gas and ballistically aggregating compact clusters. For both the cases, from event-driven molecular dynamics simulations, we have presented detailed results on structure and dynamics in space dimensions d=1 and 2. Via appropriate analyses it has been confirmed that the ballistic aggregation mechanism applies in d=1 granular gases as well. Aging phenomena for this mechanism, in both the dimensions, have been studied via the two-time density autocorrelation function. This quantity is demonstrated to exhibit scaling property similar to that in the standard phase transition kinetics. The corresponding functional forms have been quantified and the outcomes have been discussed in connection with the structural properties. Our results on aging establish a more complete equivalence between the granular gas and the ballistic aggregation models in d=1.
我们研究了自由冷却颗粒气体模型和弹道聚集致密团簇模型中的远离平衡动力学。对于这两种情况,通过事件驱动的分子动力学模拟,我们给出了空间维度d = 1和2中结构和动力学的详细结果。通过适当的分析,已证实弹道聚集机制也适用于d = 1的颗粒气体。在这两个维度上,通过二次密度自相关函数研究了该机制的老化现象。结果表明,该量表现出与标准相变动力学中类似的标度性质。已经对相应的函数形式进行了量化,并结合结构性质对结果进行了讨论。我们关于老化的结果在d = 1的情况下建立了颗粒气体和弹道聚集模型之间更完整的等价关系。