论文标题
引力波途径通往可测试的诱导生成
Gravitational Wave Pathway to Testable Leptogenesis
论文作者
论文摘要
我们用最近提出的质量增益机制分析了在谐振生成的背景下,分析了经典的规模不变$ b-l $模型。在这种情况下,$ b-l $对称性破坏与强大的一阶相变有关,该过渡通过气泡碰撞引起了可检测到的引力波(GWS)。相同的$ b-l $对称性破裂也使气泡内中微子的主要质量使右手中微子质量,并且它们的平衡衰减可以通过瘦素生成产生观察到的宇宙的重子不对称性。我们表明,随机GW背景上的当前Ligo-Virgo限制已经排除了$ B-L $参数空间的一部分,对撞机搜索的重$ z^{\ prime} $共振的互补。此外,爱因斯坦望远镜和宇宙资源管理器等未来的GW实验可以有效地探测瘦素发生的参数空间,并在$ b-l $ symetry-symmetry的尺度和量规耦合值中。
We analyze the classically scale-invariant $B-L$ model in the context of resonant leptogenesis with the recently proposed mass-gain mechanism. The $B-L$ symmetry breaking in this scenario is associated with a strong first order phase transition that gives rise to detectable gravitational waves (GWs) via bubble collisions. The same $B-L$ symmetry breaking also gives Majorana mass to right-handed neutrinos inside the bubbles, and their out of equilibrium decays can produce the observed baryon asymmetry of the Universe via leptogenesis. We show that the current LIGO-VIRGO limit on stochastic GW background already excludes part of the $B-L$ parameter space, complementary to the collider searches for heavy $Z^{\prime}$ resonances. Moreover, future GW experiments like Einstein Telescope and Cosmic Explorer can effectively probe the parameter space of leptogenesis over a wide range of the $B-L$ symmetry-breaking scales and gauge coupling values.