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Enhancement of Critical Slowing Down in Chiral Phase Transition -- Langevin Dynamics Approach --

机译:手性相变中临界减速的增强-Langevin动力学方法-

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摘要

We derive the linear Langevin equation that describes the behavior of the fluctuations of the order parameter of the chiral phase transition above the critical temperature by applying the projection operator method to the Nambu-Jona-Lasinio model at finite temperature and density. The Langevin equation relaxes exhibiting oscillation, reveals thermalization and converges to the equilibrium state consistent with the mean-field approximation as time goes on. With the help of this Langevin equation, we further investigate the relaxation of the critical fluctuations. The relaxation time of the critical fluctuations increases at speed as the temperature approaches toward the critical temperature because of the critical slowing down. The critical slowing down is enhanced as the chemical potential increases because of the Pauli blocking. Furthermore, we find another enhancement of the critical slowing down around the tricritical point.
机译:通过在有限的温度和密度下将投影算子方法应用于Nambu-Jona-Lasinio模型,我们得出了描述临界温度以上手性相变的阶跃参数波动行为的线性Langevin方程。 Langevin方程可放松表现出的振荡,揭示热化并随着时间的流逝收敛到与平均场近似一致的平衡状态。借助此Langevin方程,我们进一步研究了临界波动的松弛。临界波动的弛豫时间随着温度接近临界温度而随着速度的增加而增加,因为临界速度变慢。由于Pauli阻滞,随着化学势的增加,临界减慢速度加快。此外,我们发现临界速度在三临界点附近的另一个增强。

著录项

  • 作者

    Koide, T; Maruyama, M;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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