论文标题
早期宇宙中的pion凝结在非变化的Lepton风味不对称及其重力波特征
Pion condensation in the early Universe at nonvanishing lepton flavor asymmetry and its gravitational wave signatures
论文作者
论文摘要
我们研究了早期宇宙中Bose-Einstein凝结相的可能形成,而Lepton风味不对称的不变值。基于在非零等音蛋白密度的第一原则晶格QCD模拟的强体共振气体模型,用于评估电子,MUON和TAU LEPTON不对称值的宇宙轨迹,这些轨迹满足了整个Lepton不对称的可用约束。如果组合的电子和muon不对称性足够大,则宇宙轨迹可以通过Pion冷凝相:$ | l_e +l_μ| \ gtrsim 0.1 $,对单个风味不对称之间的差异$ l_e -l_μ$几乎没有敏感性。因此,对单个Lepton风味不对称值的价值的未来限制将能够确认或排除宇宙QCD时期乳腺的凝结。我们证明,锥形相凝结的相在原始重力波的光谱和QCD尺度上原始黑洞的质量分布上留下了印记,例如最近可以在该阶段形成Ligo事件GW190521的黑洞二进制。
We investigate the possible formation of a Bose-Einstein condensed phase of pions in the early Universe at nonvanishing values of lepton flavor asymmetries. A hadron resonance gas model with pion interactions, based on first-principle lattice QCD simulations at nonzero isospin density, is used to evaluate cosmic trajectories at various values of electron, muon, and tau lepton asymmetries that satisfy the available constraints on the total lepton asymmetry. The cosmic trajectory can pass through the pion condensed phase if the combined electron and muon asymmetry is sufficiently large: $|l_e + l_μ| \gtrsim 0.1$, with little sensitivity to the difference $l_e - l_μ$ between the individual flavor asymmetries. Future constraints on the values of the individual lepton flavor asymmetries will thus be able to either confirm or rule out the condensation of pions during the cosmic QCD epoch. We demonstrate that the pion condensed phase leaves an imprint both on the spectrum of primordial gravitational waves and on the mass distribution of primordial black holes at the QCD scale e.g. the black hole binary of recent LIGO event GW190521 can be formed in that phase.