论文标题

QCD临界点附近的波动动力学

Fluctuation dynamics near the QCD critical point

论文作者

Du, Lipei, Heinz, Ulrich, Rajagopal, Krishna, Yin, Yi

论文摘要

新型水电+框架探索了QCD临界点附近的非流动力慢速过程的演变,该框架通过将其耦合到描述长波长波动的其他明确发展的慢速模式来扩展常规流体动力学描述。它们的缓慢松弛由相关长度的临界行为控制,并且独立于控制流体动力量进化的物质密度和压力的梯度。在这项探索性研究中,我们遵循简化QCD物质背景之上的慢速模式的演变,使我们能够清楚地区分和分别研究并结合使用,这是控制关键慢速模式动态的主要效果。特别是,我们展示了慢速模式的演变如何取决于它们的波数,流体背景的膨胀和对流的扩展以及相关长度的行为。讨论了影响散装动力学(熵,压力,温度和化学电位)的批量物质特性的非平衡贡献,并发现很小。

The evolution of non-hydrodynamic slow processes near the QCD critical point is explored with the novel Hydro+ framework, which extends the conventional hydrodynamic description by coupling it to additional explicitly evolving slow modes describing long wavelength fluctuations. Their slow relaxation is controlled by critical behavior of the correlation length and is independent from gradients of matter density and pressure that control the evolution of the hydrodynamic quantities. In this exploratory study we follow the evolution of the slow modes on top of a simplified QCD matter background, allowing us to clearly distinguish, and study both separately and in combination, the main effects controlling the dynamics of critical slow modes. In particular, we show how the evolution of the slow modes depend on their wave number, the expansion of and advection by the fluid background, and the behavior of the correlation length. Non-equilibrium contributions from the slow modes to bulk matter properties that affect the bulk dynamics (entropy, pressure, temperature and chemical potential) are discussed and found to be small.

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