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Nonequilibrium critical relaxation of structurally disordered systems in the short-time regime: Renormalization group description and computer simulation

机译:短时间内非结构性系统的非平衡临界松弛:重整化群描述和计算机模拟

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摘要

The influence of nonequilibrium initial states on the evolution of anisotropic systems with quenched uncorrelated structural defects at the critical point is studied. The field-theoretical description of the nonequilibrium critical behavior of 3D systems is obtained for the first time, and the dynamic critical exponent of the short-time evolution in the two-loop approximation without the use of E > expansion is calculated. The values of dynamic critical exponents calculated using the series resummation methods are compared with the results of computer simulation of nonequilibrium critical behavior of the 3D disordered Ising model in the short-time regime. It is demonstrated that the values of the critical exponents calculated in this paper are in better agreement with the results of computer simulation than the results of application of E > expansion.
机译:研究了非平衡初始状态对在临界点处淬火不相关结构缺陷的各向异性系统演化的影响。首次获得了3D系统非平衡临界行为的场论描述,并在不使用E>展开的情况下,计算了两环近似中短时演化的动态临界指数。将使用系列恢复方法计算的动态临界指数值与3D无序伊辛模型在短时间内的非平衡临界行为的计算机仿真结果进行比较。结果表明,与应用E>扩展的结果相比,本文计算的关键指数的值与计算机模拟的结果更好地吻合。

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