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Hydrodynamics of ultra-relativistic bubble walls

机译:超相对论气泡壁的流体力学

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摘要

In cosmological first-order phase transitions, gravitational waves are generated by the collisions of bubble walls and by the bulk motions caused in the fluid. A sizeable signal may result from fast-moving walls. In this work we study the hydrodynamics associated to the fastest propagation modes, namely, ultra-relativistic detonations and runaway solutions. We compute the energy injected by the phase transition into the fluid and the energy which accumulates in the bubble walls. We provide analytic approximations and fits as functions of the net force acting on the wall, which can be readily evaluated for specific models. We also study the back-reaction of hydrodynamics on the wall motion, and we discuss the extrapolation of the friction force away from the ultra-relativistic limit. We use these results to estimate the gravitational wave signal from detonations and runaway walls.
机译:在宇宙学的一阶相变中,重力波是由气泡壁的碰撞以及流体中的整体运动产生的。快速移动的墙壁可能会产生较大的信号。在这项工作中,我们研究了与最快传播模式(即超相对论爆轰和失控解决方案)相关的流体动力学。我们计算通过相变注入流体的能量以及在气泡壁中积累的能量。我们提供作用在墙壁上的净力的函数的解析近似值和拟合值,可以针对特定模型轻松进行评估。我们还研究了流体动力学对壁运动的反作用,并讨论了摩擦力从超相对论极限的外推法。我们使用这些结果来估计引爆和失控壁的引力波信号。

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