论文标题
评估吸收氢对银河中心过量特征的影响
Assessing the Impact of Hydrogen Absorption on the Characteristics of the Galactic Center Excess
论文作者
论文摘要
我们介绍了内部星系中原子氢分布的新重建,该重建基于线和连续发射的显式辐射传输建模,以及在范式的银河系中的气流模型,该模型可为朝向银河系中心的视线提供距离分辨率。新天然气模型的主要好处是,a)能够重现H $ 4 $ 4PI调查的负线信号以及b),这是主要通过吸收而表现出来的气体的会计。 我们将新的银河原子氢的新模型应用于内部银河系的弥漫性伽马射线发射的分析,据报道,在几个GEV处过量的过量可能与暗物质有关。我们发现,如果我们的新型H $ I $模型用于估计宇宙射线诱导的弥漫性伽马射射射线发射,则发现使用Fermi-LAT观察到的弥漫性伽马射线发射的拟合度很高。拟合仍然需要具有很高意义的核凸起。一旦包含在内,就没有证据表明其cuspy或cor脚。但是,数据仍然受到了额外的所谓叉隆凸起。在各种参数的变化下,例如原子氢的激发温度以及对系统问题的许多测试。
We present a new reconstruction of the distribution of atomic hydrogen in the inner Galaxy that is based on explicit radiation-transport modelling of line and continuum emission and a gas-flow model in the barred Galaxy that provides distance resolution for lines of sight toward the Galactic Center. The main benefits of the new gas model are, a), the ability to reproduce the negative line signals seen with the H$I$4PI survey and, b), the accounting for gas that primarily manifests itself through absorption. We apply the new model of Galactic atomic hydrogen to an analysis of the diffuse gamma-ray emission from the inner Galaxy, for which an excess at a few GeV was reported that may be related to dark matter. We find with high significance an improved fit to the diffuse gamma-ray emission observed with the Fermi-LAT, if our new H$I$ model is used to estimate the cosmic-ray induced diffuse gamma-ray emission. The fit still requires a nuclear bulge at high significance. Once this is included there is no evidence for a dark-matter signal, be it cuspy or cored. But an additional so-called boxy bulge is still favoured by the data. This finding is robust under the variation of various parameters, for example the excitation temperature of atomic hydrogen, and a number of tests for systematic issues.