论文标题

宇宙黎明基本常数的变化

Variations in fundamental constants at the cosmic dawn

论文作者

Lopez-Honorez, Laura, Mena, Olga, Palomares-Ruiz, Sergio, Villanueva-Domingo, Pablo, Witte, Samuel J.

论文摘要

对基本常数的时空变化的观察将为存在自然理论中新的自由度的存在提供有力的证据。强大的限制这种情况需要利用跨越不同尺度并在不同时期探测宇宙状态的观测值。在宇宙学的背景下,宇宙微波背景和Lyman- $α$森林都被证明是能够限制电磁变化的强大工具,但是目前尚不存在能够弥合重组和消电之间差距的宇宙学探针。在不久的将来,射电望远镜将尝试测量在电离时期和宇宙黎明时期中性氢的21厘米过渡(可能是黑暗时代的尾端);这些实验对电磁现象具有固有的敏感,将对细胞结构常数和电子质量的时空变化提供独特的视角。我们在这里表明,这些基本常数的巨大变化将在21厘米的功率谱上产生特征,这可能与天体物理不确定性可区分。此外,我们预测平方公里数组的灵敏度,并表明21cm功率谱可能能够约束$ {\ cal o}(10^{ - 3})$的级别的变化。

The observation of space-time variations in fundamental constants would provide strong evidence for the existence of new light degrees of freedom in the theory of Nature. Robustly constraining such scenarios requires exploiting observations that span different scales and probe the state of the Universe at different epochs. In the context of cosmology, both the cosmic microwave background and the Lyman-$α$ forest have proven to be powerful tools capable of constraining variations in electromagnetism, however at the moment there do not exist cosmological probes capable of bridging the gap between recombination and reionization. In the near future, radio telescopes will attempt to measure the 21cm transition of neutral hydrogen during the epochs of reionization and the cosmic dawn (and potentially the tail end of the dark ages); being inherently sensitive to electromagnetic phenomena, these experiments will offer a unique perspective on space-time variations of the fine-structure constant and the electron mass. We show here that large variations in these fundamental constants would produce features on the 21cm power spectrum that may be distinguishable from astrophysical uncertainties. Furthermore, we forecast the sensitivity for the Square Kilometer Array, and show that the 21cm power spectrum may be able to constrain variations at the level of ${\cal O}(10^{-3})$.

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