Bernal Nicolás, Cosme Catarina, Tenkanen Tommi, Vaskonen Ville
1Centro de Investigaciones, Universidad Antonio Nariño, Carrera 3 Este # 47A-15, Bogotá, Colombia.
2Departamento de Física e Astronomia, Faculdade de Ciências da Universidade do Porto and Centro de Física do Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal.
Eur Phys J C Part Fields. 2019;79(1):30. doi: 10.1140/epjc/s10052-019-6550-9. Epub 2019 Jan 16.
We study production of dark matter (DM) in models with a non-standard expansion history. We consider both freeze-out and freeze-in mechanisms for producing the observed DM abundance in a model where the DM consists of scalar singlet particles coupled to the Standard Model sector via the Higgs portal. We show that a non-standard expansion phase can lead to a significant change in the DM abundance and therefore to observational ramifications. For example, for DM freeze-in the required portal coupling can be much larger, whereas for DM freeze-out much smaller values become allowed. We evaluate the relevant constraints and discuss prospects for direct detection of such DM.
我们研究具有非标准膨胀历史模型中暗物质(DM)的产生。我们考虑了通过希格斯门户与标准模型部分耦合的标量单态粒子构成暗物质的模型中,产生观测到的暗物质丰度的冻结出局和冻结入机制。我们表明,非标准膨胀阶段会导致暗物质丰度发生显著变化,从而产生观测结果。例如,对于暗物质冻结入,所需的门户耦合可能要大得多,而对于暗物质冻结出局,则允许小得多的值。我们评估了相关约束,并讨论了直接探测这种暗物质的前景。