Gamma-ray spectroscopy of galactic nucleosynthesis

R. Diehl, J. Greiner, M. Krause, Moritz M. M. Pleintinger, T. Siegert
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Abstract

Diffuse gamma-ray emission from the decay of radioactive 26Al is a messenger from the nucleosynthesis activity in our current-day galaxy. Because this material is attributed to ejections from massive stars and their supernovae, the gamma-ray signal includes information about nucleosynthesis in massive star interiors as it varies with evolutionary stages, and about their feedback on the surrounding interstellar medium. Our method of population synthesis of massive-star groups has been refined as a diagnostic tool for this purpose. It allows to build a bottom-up prediction of the diffuse gamma-ray sky when known massive star group distributions and theoretical models of stellar evolution and core-collapse supernova explosions are employed. We find general consistency of an origin in such massive-star groups, in particular we also find support for the clumpy distribution of such source regions across the Galaxy, and characteristics of large cavities around these. A discrepancy in the integrated 26Al gamma-ray flux is interpreted as an indication for excess 26Al emission from nearby, distributed in cavities that extend over major regions of the sky.
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星系核合成的伽马射线光谱学
来自放射性26Al衰变的漫射伽马射线是我们当前星系核合成活动的信使。由于这些物质来自大质量恒星及其超新星的喷射,伽马射线信号包括大质量恒星内部核合成的信息,因为它随着进化阶段的变化而变化,以及它们对周围星际介质的反馈。我们的大质量恒星群的总体合成方法已经被改进为一种诊断工具。当使用已知的大质量恒星群分布和恒星演化和核心坍缩超新星爆炸的理论模型时,它可以建立一个自下而上的漫射伽马射线天空预测。我们在这样的大质量恒星群中发现了一个起源的总体一致性,特别是我们还发现了支持星系中这种源区域的块状分布,以及这些区域周围大空洞的特征。集成的26Al伽马射线通量的差异被解释为附近过量的26Al发射的迹象,分布在覆盖天空主要区域的空腔中。
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