论文标题

银河系的动力学如何 - 大型麦哲伦云系统会影响粒子暗物质的伽马射线约束?

How do the dynamics of the Milky Way -- Large Magellanic Cloud system affect gamma-ray constraints on particle dark matter?

论文作者

Eckner, Christopher, Calore, Francesca, Erkal, Denis, Lilleengen, Sophia, Petersen, Michael S.

论文摘要

先前关于天体物理暗物质(DM)约束的研究都假定银河系(MW)的DM光环可以隔离建模。但是,最近的工作表明,MW最大的矮人卫星大型麦哲伦云(LMC)的质量为10-20 $ \%$ \%$ $ \%$,目前正在与我们的星系合并。结果,预计MW和LMC的DM光环将很大变形。我们在这里解决并量化了由LMC通过MW通过MW通过MW对间接DM搜索前景的影响。利用MW-LMC系统演变的一组最新数值模拟,我们根据基本函数扩展形式上的形式在当前两个星系中得出了两个星系中的DM分布。因此,我们构建了MW-LMC系统的$ J $ -FACTOR全套地图,以研究LMC通道对伽马射线间接搜索的影响,以在外部MW Halo以及LMC Halo独立的内部MW Halo中进行热产生的DM nih灭。我们对12年的费米LAT数据进行了详细的分析,该数据结合了各种大型伽马射线发射组件,并量化了与天体物理伽马射线源不完善的知识相关的系统不确定性。我们发现,由LMC通道引起的动力响应可以改变弱尺度粒子DM在速度平均歼灭横截面上的约束,该水平与MW Halo密度谱和总质量的现有观察性不确定性相当。

Previous studies on astrophysical dark matter (DM) constraints have all assumed that the Milky Way's (MW) DM halo can be modelled in isolation. However, recent work suggests that the MW's largest dwarf satellite, the Large Magellanic Cloud (LMC), has a mass of 10-20$\%$ that of the MW and is currently merging with our Galaxy. As a result, the DM haloes of the MW and LMC are expected to be strongly deformed. We here address and quantify the impact of the dynamical response caused by the passage of the LMC through the MW on the prospects for indirect DM searches. Utilising a set of state-of-the-art numerical simulations of the evolution of the MW-LMC system, we derive the DM distribution in both galaxies at the present time based on the Basis Function Expansion formalism. Consequently, we build $J$-factor all-sky maps of the MW-LMC system in order to study the impact of the LMC passage on gamma-ray indirect searches for thermally produced DM annihilating in the outer MW halo as well as within the LMC halo standalone. We conduct a detailed analysis of 12 years of Fermi-LAT data that incorporates various large-scale gamma-ray emission components and we quantify the systematic uncertainty associated with the imperfect knowledge of the astrophysical gamma-ray sources. We find that the dynamical response caused by the LMC passage can alter the constraints on the velocity-averaged annihilation cross section for weak scale particle DM at a level comparable to the existing observational uncertainty of the MW halo's density profile and total mass.

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