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Gamma-Ray Lines and High-Energy Sources

机译:伽马射线和高能源

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Gamma-ray lines may provide diagnostic information on cosmic high energy sources: They originate from the decay of radioactive nucleosynthesis products, from positron annihilations, and from atomic nuclei which have been excited by energetic collisions. Shortlived isotopes such as 56Ni and 44Ti are produced in supernovae, their gamma-ray line intensities and line profiles reflect kinematics and morphology of the exploding star. Long-lived isotopes such as 26Al, and also the positron annihilation gamma-rays, can be used to study propagation processes in the interstellar medium near high-energy sources, complementing observational time scales at the long end of the range of interest. Such annihilation emission and also lines from excited nuclei near accreting compact stars should reflect energetic conditions at environments which are believed to inject suprathermal particles into relativistic accelerators to produce cosmic rays. New INTEGRAL measurements on these frontiers are discussed in this paper.
机译:伽马射线线可以提供有关宇宙高能源的诊断信息:它们来自正电子湮没的放射性核酸合作产品的衰减,以及由能量碰撞兴奋的原子核。 SuperNovae中产生56ni和44Ti等短期同位素,它们的伽马射线强度和线轮廓反映了爆炸星的运动学和形态。长寿同位素如26AL,以及正电子湮没γ射线,可用于研究高能量源附近的星际介质中的传播过程,在感兴趣范围的长期互补的观测时间尺度。这种湮灭发射和来自富集的致密恒星附近的兴奋核的排放应反映在据信中的环境中的能量条件,以便将同龄颗粒注入相对论的促进剂以产生宇宙射线。本文讨论了这些前沿的新积分测量。

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