论文标题

暗物质模型对EOR 21-CM信号双光谱的影响

Impact of dark matter models on the EoR 21-cm signal bispectrum

论文作者

Saxena, Anchal, Majumdar, Suman, Kamran, Mohd, Viel, Matteo

论文摘要

暗物质的性质为第一次倒塌的光环的形成设定了时间表,从而影响了电离的来源。在这里,我们考虑了两种不同的暗物质模型:冷暗物质(CDM)和热温暖的暗物质(WDM),并研究它们如何影响电离时代(EOR)及其21厘米可观察物。使用一套模拟,我们发现在WDM场景中,与CDM方案相比,小尺度上的结构形成被抑制,从而导致较少数量的低质量暗物质光环。假设源在产生电离光子中的效率保持不变,这会导致在任何给定的宇宙时间产生的总电离光子数量较低,从而导致延迟回离过程。我们还发现与CDM相比,在WDM的情况下,中性氢(HI)拓扑(HI)和21厘米地图的视觉差异。但是,发现21 cm功率谱的差异(在相同的中性部分)很小。因此,我们专注于EOR 21-CM信号中的非高斯性,并通过其双光谱量化。我们发现,与CDM相比,WDM模型中的21厘米双光谱(由HI拓扑驱动)也有显着差异,甚至对于相同的质量平均中性分数。这表明21 cm双光谱是区分不同暗物质模型的独特而有希望的方法,并且可以用来限制未来的EOR观察中暗物质的性质。

The nature of dark matter sets the timeline for the formation of first collapsed halos and thus affects the sources of reionization. Here, we consider two different models of dark matter: cold dark matter (CDM) and thermal warm dark matter (WDM), and study how they impact the epoch of reionization (EoR) and its 21-cm observables. Using a suite of simulations, we find that in the WDM scenarios, the structure formation on small scales gets suppressed resulting in a smaller number of low mass dark matter halos compared to the CDM scenario. Assuming that the efficiency of sources in producing ionizing photons remain the same, this leads to a lower number of total ionizing photons produced at any given cosmic time and thus in a delay in the reionization process. We also find visual differences in the neutral hydrogen (HI) topology and in 21-cm maps in case of the WDM compared to the CDM. However, differences in the 21-cm power spectra, at the same neutral fraction, are found to be small. Thus, we focus on the non-Gaussianity in the EoR 21-cm signal, quantified through its bispectrum. We find that the 21-cm bispectra (driven by the HI topology) are significantly different in WDM models when compared with CDM, even for same mass averaged neutral fractions. This establishes that the 21-cm bispectrum is a unique and promising way to differentiate between different dark matter models, and can be used to constrain the nature of the dark matter in the future EoR observations.

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