论文标题

宇宙学中黑暗维度的各个方面

Aspects of the Dark Dimension in Cosmology

论文作者

Anchordoqui, Luis A., Antoniadis, Ignatios, Lust, Dieter

论文摘要

最近,人们理解,如果将武物的猜想面对实验,它们自然地指出了宇宙学层次结构问题的解决方案,在这种问题中,黑暗能量的较小性归因于内部(黑暗)维度,其特征性长度尺度在微米范围内。后来推断,标准模型场与深色尺寸中重力的大量Spin-2 Kaluza-Klein(KK)激发的普遍耦合导致了暗物质候选者。由于Kk Gradton的部分衰减宽度必须相对较小才能适应实验,因此该模型在探针方面尤其具有挑战性。我们表明,该模型可以容纳与右撇子中微子相关的中微子质量在大部分黑暗维度中传播,并通过中微子振荡数据施加的附加约束。之后,我们研究了KK塔在宇宙学中的影响。我们表明,由$ {\ rm kk} \至γγ$驱动的红移21厘米线的调制可能在下一代实验的范围内(例如SKA和Farside)。我们还表明,间接的暗物质搜索可以揭示$ {\ rm kk} \至γγ$信号。这两个观察结果组合具有模型识别的潜力。最后,我们探索了通货膨胀阶段的全局结构,并证明了由5维宇宙学常数(对应于5维电位的平坦区域)驱动的成功均匀通货膨胀所需的模型参数是自然的。

It was recently understood that if the swampland conjectures are confronted to experiment they naturally point to a solution of the cosmological hierarchy problem in which the smallness of the dark energy is ascribed to an internal (dark) dimension with characteristic length-scale in the micron range. It was later inferred that the universal coupling of the Standard Model fields to the massive spin-2 Kaluza-Klein (KK) excitations of the graviton in the dark dimension leads to a dark matter candidate. Since the partial decay widths of KK gravitons into the visible sector must be relatively small to accommodate experiment, the model is particularly challenging to probe. We show that the model can accommodate neutrino masses associated to right-handed neutrinos propagating in the bulk of the dark dimension with an additional constraint imposed by neutrino oscillation data. After that, we study the impact of the KK tower in cosmology. We show that the modulation of redshifted 21-cm lines driven by ${\rm KK} \to γγ$ could be within the reach of next generation experiments (e.g. SKA and FARSIDE). We also show that indirect dark matter searches could uncover the ${\rm KK} \to γγ$ signal. These two observations combined have the potential for model identification. Finally, we explore the global structure of the inflationary phase and demonstrate that the model parameters required for a successful uniform inflation driven by a 5-dimensional cosmological constant (corresponding to a flat region of the 5-dimensional potential) are natural.

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