银河26Al通过热烟囱追踪金属的损失

M. Krause, D. Rodgers-Lee, J. Dale, R. Diehl, C. Kobayashi
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引用次数: 7

摘要

放射性26Al是银河系中金属抛射的优良示踪剂,可以为星系演化中超新星反馈的建模提供直接约束。对26Al衰变线的伽马射线观测发现了很高的速度,因此需要银河系26Al在热成分中的很大一部分。与此同时,陨星数据结合模拟结果表明,大量的26Al在衰变之前就进入了恒星。我们研究了热通道和冷通道的分布,模拟了一个类似银河系的星系,在超级气泡中有大质量恒星反馈,并有26Al追踪的喷射物。大约30- 40%的喷射物保持高温,典型的冷却时间为Gyr数量级。26Al追踪了烟囱式流出物的足迹,这种流出物以至少50kpc的规模将金属湍流地混合到模型星系的光晕中。其余的则扩散成温度低于10000 K的低温气体,因此可能很快就能形成恒星。通过与具有不同全局流型的模拟进行比较,讨论了结果的鲁棒性。热成分和冷成分的分支比率与星系、星系团和星系团内介质的化学演化模型的长期平均结果相当。
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Galactic 26Al traces metal loss through hot chimneys
Radioactive 26Al is an excellent tracer for metal ejection in the Milky Way, and can provide a direct constraint on the modelling of supernova feedback in galaxy evolution. Gamma-ray observations of the 26Al decay line have found high velocities and hence require a significant fraction of the Galactic 26Al in the hot component. At the same time, meteoritic data combined with simulation results suggest that a significant amount of 26Al makes its way into stars before decay. We investigated the distribution into hot and cold channels with a simulation of a Milky-Way-like galaxy with massive-star feedback in superbubbles and with ejecta traced by 26Al. About 30-40 per cent of the ejecta remain hot, with typical cooling times of the order Gyr. 26Al traces the footpoints of a chimney-fed outflow that mixes metals turbulently into the halo of the model galaxy on a scale of at least 50 kpc. The rest diffuses into cold gas with temperatures less than about 10,000 K, and may therefore be quickly available for star formation. We discuss the robustness of the result by comparison to a simulation with a different global flow pattern. The branching ratio into hot and cold components is comparable to that of longer term average results from chemical evolution modelling of galaxies, clusters and the intracluster medium.
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