Galactic Distribution of Supernovae and OB Associations

M. Kachelriess, V. Mikalsen
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Abstract

We update and extend a previous model by Higdon and Lingenfelter for the longitudinal profile of the N\,II intensity in the Galactic plane. The model is based on four logarithmic spiral arms, to which features like the Local Arm and local sources are added. Connecting then the N\,II to the H\,II emission, we use this model to determine the average spatial distribution of OBassociations in the Milky Way. Combined with a stellar mass and cluster distribution function, the model predicts the average spatial and temporal distribution of core-collapse supernovae in the Milky Way. In addition to this average population, we account for supernovae from observed OB associations, providing thereby a more accurate description of the nearby Galaxy. The complete model is made publicly available in the python code SNOB.
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超新星和 OB 组合的银河系分布
我们更新并扩展了 Higdon 和 Lingenfelter 以前建立的银河面上 N,II强度纵剖面模型。该模型以四个对数旋臂为基础,并加入了本地臂和本地源等特征。然后将N(II)辐射与H(II)辐射连接起来,我们利用这个模型来确定银河系中OB星团的平均空间分布。结合恒星质量和星团分布函数,该模型预测了银河系中核坍缩超新星的平均空间和时间分布。除了这个平均分布外,我们还考虑了观测到的OB联合体中的超新星,从而提供了对附近星系更精确的描述。完整的模型可以通过 python 代码 SNOB 公开获得。
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