Gamma-ray Emission of 60Fe and 26Al Radioactivities in our Galaxy
arXiv:1912.07874 · doi:10.3847/1538-4357/ab6336
Abstract
The isotopes Fe and Al originate from massive stars and their supernovae, reflecting ongoing nucleosynthesis in the Galaxy. We studied the gamma-ray emission from these isotopes at characteristic energies 1173, 1332, and 1809 keV with over 15 years of SPI data, finding a line flux in Fe combined lines of ph cm s and the Al line flux of ph cm s above the background and continuum emission for the whole sky. Based on the exponential-disk grid maps, we characterise the emission extent of Al to find scale parameters kpc and kpc, however the Fe lines are too weak to spatially constrain the emission. Based on a point source model test across the Galactic plane, the Fe emission would not be consistent with a single strong point source in the Galactic center or somewhere else, providing a hint for a diffuse nature. We carried out comparisons of emission morphology maps using different candidate-source tracers for both Al and Fe emissions, and suggests that the Fe emission is more likely to be concentrated towards the Galactic plane. We determine the Fe/Al -ray flux ratio at , when using a parameterized spatial morphology model. Across the range of plausible morphologies, it appears possible that Al and Fe are distributed differently in the Galaxy. Using the best fitting maps for each of the elements, we constrain flux ratios in the range 0.2--0.4. We discuss its implications for massive star models and their nucleosynthesis.
29 pages, 13 figures, 2 table, accept for the publication in ApJ
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