论文标题
超冷的限制中的弦碎片及其对暗物质的影响
String Fragmentation in Supercooled Confinement and Implications for Dark Matter
论文作者
论文摘要
一个强耦合的部门可以在早期宇宙中具有超冷的禁闭过渡。我们指出,当强部门的基本量子被扫除到狭窄相的范围内,与限制量表相比,它们之间的距离很大。我们建议对随后的动力学进行建模,并发现将基本量子变形和向墙伸展的磁通链接起来,从而在弦乐碎片时产生了增强的复合状态。复合态在血浆框架中高度增强,从而通过随后的深度非弹性散射导致额外的颗粒产生。我们研究了宇宙中颗粒的丰度和能量学和气泡壁洛伦兹因子的后果。这打开了几种新的研究途径,我们开始在这里探索,这表明复合暗物质遗物密度受许多数量级的影响。
A strongly-coupled sector can feature a supercooled confinement transition in the early universe. We point out that, when fundamental quanta of the strong sector are swept into expanding bubbles of the confined phase, the distance between them is large compared to the confinement scale. We suggest a modelling of the subsequent dynamics and find that the flux linking the fundamental quanta deforms and stretches towards the wall, producing an enhanced number of composite states upon string fragmentation. The composite states are highly boosted in the plasma frame, which leads to additional particle production through the subsequent deep inelastic scattering. We study the consequences for the abundance and energetics of particles in the universe and for bubble-wall Lorentz factors. This opens several new avenues of investigation, which we begin to explore here, showing that the composite dark matter relic density is affected by many orders of magnitude.