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Diffuse Galactic Continuum Gamma Rays. A Model Compatible with EGRET Data and Cosmic-ray Measurements

机译:漫射银河连续体伽玛射线。与EGRET数据和宇宙射线测量兼容的模型

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摘要

We present a study of the compatibility of some current models of the diffuse Galactic continuum gamma-rays with EGRET data. A set of regions sampling the whole sky is chosen to provide a comprehensive range of tests. The range of EGRET data used is extended to 100 GeV. The models are computed with our GALPROP cosmic-ray propagation and gamma-ray production code. We confirm that the "conventional model" based on the locally observed electron and nucleon spectra is inadequate, for all sky regions. A conventional model plus hard sources in the inner Galaxy is also inadequate, since this cannot explain the GeV excess away from the Galactic plane. Models with a hard electron injection spectrum are inconsistent with the local spectrum even considering the expected fluctuations; they are also inconsistent with the EGRET data above 10 GeV. We present a new model which fits the spectrum in all sky regions adequately. Secondary antiproton data were used to fix the Galactic average proton spectrum, while the electron spectrum is adjusted using the spectrum of diffuse emission it- self. The derived electron and proton spectra are compatible with those measured locally considering fluctuations due to energy losses, propagation, or possibly de- tails of Galactic structure. This model requires a much less dramatic variation in the electron spectrum than models with a hard electron injection spectrum, and moreover it fits the y-ray spectrum better and to the highest EGRET energies. It gives a good representation of the latitude distribution of the y-ray emission from the plane to the poles, and of the longitude distribution. We show that secondary positrons and electrons make an essential contribution to Galactic diffuse y-ray emission.
机译:我们目前对弥散银河连续体伽马射线与EGRET数据的某些当前模型的兼容性进行研究。选择一组对整个天空进行采样的区域以提供全面的测试。所使用的EGRET数据范围扩展到100 GeV。使用我们的GALPROP宇宙射线传播和伽马射线产生代码来计算模型。我们确认,对于所有天空区域,基于本地观察到的电子和核子光谱的“常规模型”都不足够。内银河系中的常规模型加上硬源也是不够的,因为这不能解释远离银河系平面的GeV过量。即使考虑了预期的波动,具有硬电子注入光谱的模型也与局部光谱不一致。它们也与10 GeV以上的EGRET数据不一致。我们提出了一个新模型,该模型可以完全适合所有天空区域的光谱。二次反质子数据用于固定银河系平均质子谱,而电子谱使用扩散发射本身的谱进行调整。推导的电子和质子谱与考虑到由于能量损失,传播或银河结构可能的下降而引起的波动而在本地测量的谱兼容。与具有硬电子注入光谱的模型相比,该模型所需的电子光谱变化要小得多,而且它更适合y射线光谱并适合最高EGRET能量。它很好地表示了从平面到两极的y射线发射的纬度分布以及经度分布。我们表明,次级正电子和电子对银河漫射y射线发射做出了重要贡献。

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