论文标题

局部星系中的灰尘晶粒尺寸演变:观测和模拟之间的比较

Dust grain size evolution in local galaxies: a comparison between observations and simulations

论文作者

Relano, M., De Looze, I., Saintonge, A., Hou, K. -C., Romano, L., Nagamine, K., Hirashita, H., Aoyama, S., Lamperti, I., Lisenfeld, U., Smith, M., Chastenet, J., Xiao, T., Gao, Y., Sargent, M., van der Giessen, S. A.

论文摘要

近年来,已经研究了尘埃颗粒尺寸分布的演变,并在宇宙学流体动力学模拟中考虑了所有尘埃在星际介质中进化的通道。我们对当地宇宙中大型星系样本的观察到的光谱能分布进行了系统分析,不仅可以得出总尘埃质量,还可以得出小和大尘土(DS/DL)之间的相对质量分数。模拟可很好地重现观察结果,除了尘埃质量往往高估的高恒星质量状态。我们发现,约有45%的星系表现出与模拟期望一致的DS/DL,而大量的星系子样本显示高DS/DL(log(ds/dl)〜-0.5),并且在模拟中偏离了预测。对于这些星系也具有高分子气体质量分数和金属性,凝结并不是影响粉尘进化的重要机制。包括扩散,将大晶粒从致密区域传输到更漫射的介质,在这些介质中很容易粉碎,可以解释这些星系中观察到的高DS/DL值。通过这项研究,我们加强了使用小晶粒质量比来研究尘埃生命周期中不同机制的相对重要性。具有详细的反馈处方和更现实的子网格模型的多相流体动力学模拟,可以帮助重现观测值所追踪的灰尘粒度分布的演变。

The evolution of the dust grain size distribution has been studied in recent years with great detail in cosmological hydrodynamical simulations taking into account all the channels under which dust evolves in the interstellar medium. We present a systematic analysis of the observed spectral energy distribution of a large sample of galaxies in the local universe in order to derive not only the total dust masses but also the relative mass fraction between small and large dust grains (DS/DL). Simulations reproduce fairly well the observations except for the high stellar mass regime where dust masses tend to be overestimated. We find that ~45% of galaxies exhibit DS/DL consistent with the expectations of simulations, while there is a sub-sample of massive galaxies presenting high DS/DL (log(DS/DL)~-0.5), and deviating from the prediction in simulations. For these galaxies, which also have high molecular gas mass fractions and metallicities, coagulation is not an important mechanism affecting the dust evolution. Including diffusion, transporting large grains from dense regions to a more diffuse medium where they can be easily shattered, would explain the observed high DS/DL values in these galaxies. With this study we reinforce the use of the small-to-large grain mass ratio to study the relative importance of the different mechanisms in the dust life cycle. Multi-phase hydrodynamical simulations with detailed feedback prescriptions and more realistic subgrid models for the dense phase could help to reproduce the evolution of the dust grain size distribution traced by observations.

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