论文标题
光文物的物理学
The Physics of Light Relics
论文作者
论文摘要
标准模型的许多动机扩展预测了早期宇宙中可能产生的新光种的存在。突出的例子包括轴,无菌中微子,重力,暗光子等。光文遗物的引力影响在宇宙微波背景波动,宇宙的大规模结构和原始元素丰度中留下了烙印。在本文中,我们详细介绍了宇宙光遗物的物理学,并描述了其遗物密度和质量的测量如何作为标准模型以外的物理学的探针。以即将进行的宇宙学调查精确度对光遗物密度的测量将指向新物理学的道路,或严重将可行扩展的范围限制为标准模型。
Many well-motivated extensions of the Standard Model predict the existence of new light species that may have been produced in the early universe. Prominent examples include axions, sterile neutrinos, gravitinos, dark photons, and more. The gravitational influence of light relics leaves imprints in the cosmic microwave background fluctuations, the large-scale structure of the universe and the primordial element abundances. In this paper, we detail the physics of cosmological light relics, and describe how measurements of their relic density and mass serve as probes of physics beyond the Standard Model. A measurement of the light relic density at the precision of upcoming cosmological surveys will point the way toward new physics or severely constrain the range of viable extensions to the Standard Model.