论文标题

通过宇宙学可观察发现EV尺度的光文遗物

Finding eV-scale Light Relics with Cosmological Observables

论文作者

DePorzio, Nicholas, Xu, Weishuang Linda, Muñoz, Julian B., Dvorkin, Cora

论文摘要

宇宙学数据为搜索标准模型以外的物理(SM)提供了强大的工具。一个有趣的目标是光文物,新的自由度,在相对论的同时与SM脱钩。几乎无质量的文物有助于辐射能预算,通常被参数为中微子物种的有效数量$ n _ {\ rm eff} $的变化。此外,与群众的遗物大于$ 10^{-4} $ eV在今天之前成为非权威主义者,因此表现出色而不是辐射。这在宇宙的大规模结构的聚类中留下了烙印,因为光文遗物具有重要的流式运动,反映了大规模中微子的情况。在这里,我们预测当前和即将进行的宇宙学调查如何探测轻质的遗物(LIMR)。我们认为Fermionic和Bosonic Relic自由度对SM的扩展最小。通过结合电流和即将到来的宇宙 - 微波背景和大规模结构调查,我们可以预测每个LIMR具有不同质量和温度的重要性。我们发现,即将进行的实验可以实现很大的参数空间覆盖范围,从而开放了探索SM之外新物理学的未知领域的可能性。

Cosmological data provide a powerful tool in the search for physics beyond the Standard Model (SM). An interesting target are light relics, new degrees of freedom which decoupled from the SM while relativistic. Nearly massless relics contribute to the radiation energy budget, and are commonly parametrized as variations in the effective number $N_{\rm eff}$ of neutrino species. Additionally, relics with masses greater than $10^{-4}$ eV become non-relativistic before today, and thus behave as matter instead of radiation. This leaves an imprint in the clustering of the large-scale structure of the universe, as light relics have important streaming motions, mirroring the case of massive neutrinos. Here we forecast how well current and upcoming cosmological surveys can probe light massive relics (LiMRs). We consider minimal extensions to the SM by both fermionic and bosonic relic degrees of freedom. By combining current and upcoming cosmic-microwave-background and large-scale-structure surveys, we forecast the significance at which each LiMR, with different masses and temperatures, can be detected. We find that a very large coverage of parameter space will be attainable by upcoming experiments, opening the possibility of exploring uncharted territory for new physics beyond the SM.

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