论文标题

暗能量辐射

Dark Energy Radiation

论文作者

Berghaus, Kim V., Graham, Peter W., Kaplan, David E., Moore, Guy D., Rajendran, Surjeet

论文摘要

我们表明,如果深色能量随着时间的流逝而演变,则其动力学成分可以由深色辐射浴所主导。在当前约束中,这种辐射的能量密度最多可比宇宙微波背景高10^4 $倍。我们演示了特定的模型,其中滚动标量场会产生不同形式的深色辐射,例如隐藏的光子,毫米电荷颗粒,甚至是标准模型中微子。我们发现对后期宇宙学扩展历史的主要影响取决于一个超过$λ$ CDM的单个参数,即当今的深色辐射温度。对这种修改的膨胀率的宇宙学观察可以为这种情况提供惊人的签名。黑暗辐射本身甚至可以在实验室实验中直接检测到,这表明对暗能量的性质进行了更广泛的实验程序。

We show that if dark energy evolves in time, its dynamical component could be dominated by a bath of dark radiation. Within current constraints this radiation could have up to $\sim 10^4$ times more energy density than the cosmic microwave background. We demonstrate particular models in which a rolling scalar field generates different forms of dark radiation such as hidden photons, milli-charged particles and even Standard Model neutrinos. We find the leading effect on the late-time cosmological expansion history depends on a single parameter beyond $Λ$CDM, namely the temperature of the dark radiation today. Cosmological observations of this modified expansion rate could provide a striking signature of this scenario. The dark radiation itself could even be directly detectable in laboratory experiments, suggesting a broader experimental program into the nature of dark energy.

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