论文标题
中微子辅助的早期黑能:理论与宇宙学
Neutrino-Assisted Early Dark Energy: Theory and Cosmology
论文作者
论文摘要
在不同的红移下获得的哈勃恒定的测量值之间的张力可能会在相对早期的宇宙中,围绕物质辐射平等时期提供活跃的新物理学。解决紧张局势的领先范式是一个早期的黑暗能源时期,在这个时期,标量领域目前贡献了宇宙能量预算的亚领域。这种情况面临着重大的微调问题,可以通过标量与标准模型中微子的非平凡耦合来改善这些问题。这些变成了接近物质辐射平等时代的非友善主义,导致对标量启动的标量注入能量,从而启动了早期的黑暗能量阶段,从而解释了它与这个看似无关的时代的巧合。我们提供了这种中微子辅助的早期暗能量模型的最小版本,并对其预测和理论约束进行详细分析。我们认为这两个粒子物理学的约束 - 模型构成了一个备受言行的有效田间理论,量子校正正在控制,因此相关预测在其有效性的方向范围内 - 以及需要从早期到晚期到晚期到后期一致的宇宙学进化而提供的约束。我们的工作为使用宇宙学数据集测试这种情况铺平了道路。
The tension between measurements of the Hubble constant obtained at different redshifts may provide a hint of new physics active in the relatively early universe, around the epoch of matter-radiation equality. A leading paradigm to resolve the tension is a period of early dark energy, in which a scalar field contributes a subdominant part of the energy budget of the universe at this time. This scenario faces significant fine-tuning problems which can be ameliorated by a non-trivial coupling of the scalar to the standard model neutrinos. These become non-relativistic close to the time of matter-radiation equality, resulting in an energy injection into the scalar that kick-starts the early dark energy phase, explaining its coincidence with this seemingly unrelated epoch. We present a minimal version of this neutrino-assisted early dark energy model, and perform a detailed analysis of its predictions and theoretical constraints. We consider both particle physics constraints -- that the model constitute a well-behaved effective field theory for which the quantum corrections are under control, so that the relevant predictions are within its regime of validity -- and the constraints provided by requiring a consistent cosmological evolution from early through to late times. Our work paves the way for testing this scenario using cosmological data sets.