Understanding the dynamics of field theories far from equilibrium

K. Boguslavski
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Abstract

In recent years, there have been important advances in understanding the far-from-equilibrium dynamics in different physical systems. In ultra-relativistic heavy-ion collisions, the combination of different methods led to the development of a weak-coupling description of the early-time dynamics. The numerical observation of a classical universal attractor played a crucial role for this. Such attractors, also known as non-thermal fixed points (NTFPs), have been now predicted for different scalar and gauge theories. An important universal NTFP emerges in scalar theories modeling ultra-cold atoms, inflation or dark matter, and its scaling properties have been recently observed in an ultra-cold atom experiment. In this proceeding, recent progress in selected topics of the far-from-equilibrium evolution in these systems will be discussed. A new method to extract the spectral function numerically is a particularly promising tool to better understand their microscopic properties.
理解远离平衡的场论动力学
近年来,在理解不同物理系统的非平衡动力学方面取得了重要进展。在超相对论性重离子碰撞中,不同方法的结合导致了早期动力学的弱耦合描述的发展。经典通用吸引子的数值观测对此起到了至关重要的作用。这种吸引子,也被称为非热不动点(ntfp),现在已经在不同的标量和规范理论中得到了预测。在模拟超冷原子、暴胀或暗物质的标量理论中出现了一个重要的通用NTFP,最近在一个超冷原子实验中观察到它的标度特性。在本程序中,将讨论这些系统中远离平衡演化的选定主题的最新进展。一种新的数值提取光谱函数的方法是一种特别有前途的工具,可以更好地了解它们的微观性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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