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Influence of similar to 7 keV sterile neutrino dark matter on the process of reionization

机译:类似于7 keV的无菌中微子暗物质对电离过程的影响

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摘要

Recent reports of a weak unidentified emission line at similar to 3.5 keV found in spectra of several matter-dominated objects may give a clue to resolve the long-standing problem of dark matter. One of the best physically motivated particle candidate able to produce such an extra line is sterile neutrino with the mass of similar to 7 keV. Previous works show that sterile neutrino dark matter with parameters consistent with the new line measurement modestly affects structure formation compared to conventional cold dark matter scenario. In this work, we concentrate for the first time on contribution of the sterile neutrino dark matter able to produce the observed line at similar to 3.5 keV, to the process of reionization. By incorporating dark matter power spectra for similar to 7 keV sterile neutrinos into extended semi-analytical 'bubble' model of reionization we obtain that such sterile neutrino dark matter would produce significantly sharper reionization compared to widely used cold dark matter models, impossible to 'imitate' within the cold dark matter scenario under any reasonable choice of our model parameters, and would have a clear tendency of lowering both the redshift of reionization and the electron scattering optical depth (although the difference is still below the existing model uncertainties). Further dedicated studies of reionization (such as 21 cm measurements or studies of kinetic Sunyaev-Zeldovich effect) will thus be essential for reconstruction of particle candidate responsible the similar to 3.5 keV line.
机译:最近的报道表明,在几个以物质为主的物体的光谱中发现了一条弱的,未识别的发射谱线,近似于3.5 keV,这可能为解决长期存在的暗物质问题提供了线索。能够产生这种额外谱线的最佳物理动机粒子候选之一是无菌中微子,其质量接近7 keV。先前的工作表明,与常规冷暗物质相比,参数与新线测量一致的无菌中微子暗物质对结构形成的影响较小。在这项工作中,我们首次集中精力研究能够产生类似于3.5 keV观察到的谱线的无菌中微子暗物质对离子化过程的贡献。通过将类似于7 keV无菌中微子的暗物质功率谱合并到扩展的半分析“气泡”电离模型中,与广泛使用的冷暗物质模型相比,这种无菌中微子暗物质将产生明显更清晰的电离,无法“模仿”在我们模型参数的任何合理选择下的冷暗物质情况下,都有明显降低电离红移和电子散射光学深度的趋势(尽管差异仍低于现有模型不确定性)。因此,对于电离的进一步专门研究(例如21 cm测量或动力学Sunyaev-Zeldovich效应研究)对于重建与3.5 keV谱线相似的候选粒子至关重要。

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