论文标题

从一阶宇宙相变的随机重力波背景中检测圆极化

Detecting circular polarisation in the stochastic gravitational-wave background from a first-order cosmological phase transition

论文作者

Ellis, John, Fairbairn, Malcolm, Lewicki, Marek, Vaskonen, Ville, Wickens, Alastair

论文摘要

我们使用结合了直接能量级联和逆向能量的效应的模型,讨论了由螺旋湍流在一阶宇宙学相变后产生的随机重力波背景(SGWB)的圆极化的可观察性。我们探索引力波信号的强度及其对螺旋分数的依赖性,$ζ_*$,过渡的强度,$α$,气泡大小,$ r _*$,温度和温度,$ t _*$,在其过渡终点上。我们计算Lisa实验中SGWB强度和极化信号的前瞻性信号噪声比,以对基础粒子物理模型的最低敏感的方式探索参数空间。我们发现,SGWB极化的发现通常比测量总SGWB信号更具挑战性,但是对于具有较大气泡尺寸和大量极化分数的适当强的过渡可能是可能的。

We discuss the observability of circular polarisation of the stochastic gravitational-wave background (SGWB) generated by helical turbulence following a first-order cosmological phase transition, using a model that incorporates the effects of both direct and inverse energy cascades. We explore the strength of the gravitational-wave signal and the dependence of its polarisation on the helicity fraction, $ζ_*$, the strength of the transition, $α$, the bubble size, $R_*$, and the temperature, $T_*$, at which the transition finishes. We calculate the prospective signal-to-noise ratios of the SGWB strength and polarisation signals in the LISA experiment, exploring the parameter space in a way that is minimally sensitive to the underlying particle physics model. We find that discovery of SGWB polarisation is generally more challenging than measuring the total SGWB signal, but would be possible for appropriately strong transitions with large bubble sizes and a substantial polarisation fraction.

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