LISA as a probe for particle physics: electroweak scale tests in synergy with ground-based experiments

Daniel G. Figueroa, E. Megías, G. Nardini, M. Pieroni, M. Quirós, A. Ricciardone, G. Tasinato
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引用次数: 18

Abstract

We forecast the prospective of detection for a stochastic gravitational wave background sourced by cosmological first-order phase transitions. We focus on first-order phase transitions with negligible plasma effects, and consider the experimental infrastructures built by the end of the LISA mission. We make manifest the synergy among LISA, pulsar time array experiments, and ground-based interferometers. For phase transitions above the TeV scale or below the electroweak scale, LISA can detect the corresponding gravitational wave signal together with Einstein Telescope, SKA or even aLIGO-aVIRGO-KAGRA. For phase transitions at the electroweak scale, instead, LISA can be the only experiment observing the gravitational wave signal. In case of detection, by using a parameter reconstruction method that we anticipate in this work, we show that LISA on its own has the potential to determine when the phase transition occurs and, consequently, the energy scale above which the standard model of particle physics needs to be modified. The result may likely guide the collider community in the post-LHC era.
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LISA作为粒子物理的探测器:与地面实验协同的电弱尺度测试
我们预测了宇宙一阶相变随机引力波背景的探测前景。我们关注的是可忽略的等离子体效应的一阶相变,并考虑到LISA任务结束时建立的实验基础设施。我们展示了LISA,脉冲星时间阵列实验和地面干涉仪之间的协同作用。对于高于TeV尺度或低于电弱尺度的相变,LISA可以与爱因斯坦望远镜、SKA甚至aLIGO-aVIRGO-KAGRA一起探测到相应的引力波信号。相反,对于电弱尺度的相变,LISA可以是观测引力波信号的唯一实验。在检测的情况下,通过使用我们在这项工作中预期的参数重建方法,我们表明LISA本身具有确定相变发生时间的潜力,因此,需要修改粒子物理标准模型的能量尺度。这一结果可能会在后大型强子对撞机时代指导对撞机界。
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