Testing the dark SU(N) Yang-Mills theory Confined Landscape: From the Lattice to Gravitational Waves
arXiv:2012.11614 · doi:10.1103/PhysRevD.104.035005
Abstract
We pave the way for future gravitational-wave detection experiments, such as the Big Bang Observer and DECIGO, to constrain dark sectors made of SU(N) Yang-Mills confined theories. We go beyond the state-of-the-art by combining first principle lattice results and effective field theory approaches to infer essential information about the non-perturbative dark deconfinement phase transition driving the generation of gravitational-waves in the early universe, such as the order, duration and energy budget of the phase transition which are essential in establishing the strength of the resulting gravitational-wave signal.
17 pages, 13 figures; v2: corrected Fig.12 & typos, updated refs; v3: matches journal version; v4: minor corrections
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