论文标题
LISA独立于模型的能源预算
Model-independent energy budget for LISA
论文作者
论文摘要
我们提供了一种简单的方法,以在宇宙学一阶相变期间产生的重力波中的动能分数,这是仅在成核温度下从粒子物理模型确定的壁速度和数量的函数。这概括了最新的爆炸目标。在这里,我们介绍了Deflagrations和Hybrids的相应结果。与爆炸不同,对称阶段的声速也进入分析。我们在文献中与模型无关的方法和其他方法之间进行了详细的比较。我们提供了一个Python代码段,以确定动能分数$ K $作为壁速度的函数,两个声音速度和相变强度参数。我们还评估了在特定模型中,声音速度的现实较大偏差接近相变温度。
We provide an easy method to obtain the kinetic energy fraction in gravitational waves, generated during a cosmological first-order phase transition, as a function of only the wall velocity and quantities that can be determined from the particle physics model at the nucleation temperature. This generalizes recent work that achieved this goal for detonations. Here we present the corresponding results for deflagrations and hybrids. Unlike for detonations, the sound speed in the symmetric phase also enters the analysis. We perform a detailed comparison between our model-independent approach and other approaches in the literature. We provide a Python code snippet to determine the kinetic energy fraction $K$ as a function of the wall velocity, the two speeds of sound and the strength parameter of the phase transition. We also assess how realistic sizable deviations in speed of sound are close to the phase transition temperature in a specific model.