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Global symmetry breaking in the nonconserved order parameter system during phase ordering

机译:相守序过程中非保守序数系统的全局对称性破缺

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We study global symmetry breaking in the 2D system of scalar nonconserved order parameter following a quench to zero temperature. We show that the instant of time when the symmetry is broken and the final morphology is chosen corresponds to the saturation of the order parameter inside the domains. There are three possible final morphologies: the positive and negative order parameter final morphology, and the state of the coexisting positive and negative order parameter subsystems with a. at interface between them. We find also that each type of the final morphology constitutes about 1/3 of all cases, what agrees with the results obtained recently by Spirin et al. [Phys. Rev. E 65, 016119 ( 2001)]. Our results are pertinent for the two dimensional systems, but we suspect that there is also a way to apply similar arguments for the three dimensional ones.
机译:我们研究了骤冷至零温度后在二维非标量阶标量系统中的全局对称性破缺。我们表明,对称性被破坏并且选择了最终形态的时刻对应于域内阶参数的饱和度。存在三种可能的最终形态:正阶和负阶参数最终形态,以及带有a的正负阶参数子系统的共存状态。在它们之间的界面。我们还发现,每种类型的最终形态约占所有情况的1/3,这与Spirin等人最近获得的结果一致。 [物理E 65,016119(2001)。我们的结果与二维系统有关,但我们怀疑还有一种方法可以对三维系统应用相似的论点。

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