Schwaller Pedro
CERN, Theory Division, CH-1211 Geneva 23, Switzerland.
Phys Rev Lett. 2015 Oct 30;115(18):181101. doi: 10.1103/PhysRevLett.115.181101. Epub 2015 Oct 26.
In this work, we show that a large class of models with a composite dark sector undergo a strong first order phase transition in the early Universe, which could lead to a detectable gravitational wave signal. We summarize the basic conditions for a strong first order phase transition for SU(N) dark sectors with n_{f} flavors, calculate the gravitational wave spectrum and show that, depending on the dark confinement scale, it can be detected at eLISA or in pulsar timing array experiments. The gravitational wave signal provides a unique test of the gravitational interactions of a dark sector, and we discuss the complementarity with conventional searches for new dark sectors. The discussion includes the twin Higgs and strongly interacting massive particle models as well as symmetric and asymmetric composite dark matter scenarios.
在这项工作中,我们表明一大类具有复合暗区的模型在早期宇宙中经历了强烈的一阶相变,这可能导致可探测的引力波信号。我们总结了具有(n_f)种味的(SU(N))暗区发生强烈一阶相变的基本条件,计算了引力波谱,并表明根据暗禁闭尺度,它可以在eLISA或脉冲星计时阵列实验中被探测到。引力波信号为暗区的引力相互作用提供了独特的检验,并且我们讨论了与传统寻找新暗区方法的互补性。讨论内容包括双希格斯模型和强相互作用大质量粒子模型以及对称和不对称复合暗物质情形。