首页> 外文期刊>PASJ: Publications of the Astronomical Society of Japan >The interstellar medium and star formation of galactic disks. I. Interstellar medium and giant molecular cloud properties with diffuse far-ultraviolet and cosmic-ray backgrounds
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The interstellar medium and star formation of galactic disks. I. Interstellar medium and giant molecular cloud properties with diffuse far-ultraviolet and cosmic-ray backgrounds

机译:星系中的星际盘和星系盘。 I.星际中等和巨型分子云特性,具有远紫外线和宇宙射线背景

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We present a series of adaptive mesh refinement hydrodynamic simulations of flat rotation curve galactic gas disks, with a detailed treatment of the interstellar medium (ISM) physics of the atomic to molecular phase transition under the influence of diffuse far-ultraviolet (FUV) radiation fields and cosmic-ray backgrounds. We explore the effects of different FUV intensities, including a model with a radial gradient designed to mimic the Milky Way. The effects of cosmic rays, including radial gradients in their heating and ionization rates, are also explored. The final simulations in this series achieve 4?pc resolution across the ~20?kpc global disk diameter, with heating and cooling followed down to temperatures of ~10?K. The disks are evolved for 300?Myr, which is enough time for the ISM to achieve a quasi-statistical equilibrium. In particular, the mass fraction of molecular gas is stabilized by ~200?Myr. Additional global ISM properties are analyzed. Giant molecular clouds (GMCs) are also identified and the statistical properties of their populations are examined. GMCs are tracked as the disks evolve. GMC collisions, which may be a means of triggering star cluster formation, are counted and their rates are compared with analytic models. Relatively frequent GMC collision rates are seen in these simulations, and their implications for understanding GMC properties, including the driving of internal turbulence, are discussed.
机译:我们提出了一系列平面旋转曲线星系气体盘的自适应网格细化水动力模拟,并对星际介质(ISM)原子到分子相变在漫远紫外线(FUV)辐射场的影响下的相变进行了详细的处理。和宇宙射线背景。我们探索了不同FUV强度的影响,包括一个具有径向渐变的模型,该模型旨在模拟银河系。还研究了宇宙射线的影响,包括其加热和电离速率的径向梯度。在该系列的最终模拟中,在约20?kpc的整个磁盘直径上实现了4?pc的分辨率,加热和冷却随后降至约10?K的温度。这些磁盘的演化时间为300?Myr,这足以使ISM达到准统计平衡。特别是分子气体的质量分数稳定在〜200?Myr。分析了其他全局ISM属性。还可以识别巨型分子云(GMC)并检查其种群的统计特性。随着磁盘的发展,将跟踪GMC。对GMC碰撞(可能是触发星团形成的一种手段)进行了计数,并将其发生率与解析模型进行了比较。在这些模拟中可以看到相对频繁的GMC碰撞率,并讨论了它们对理解GMC特性(包括内部湍流的驱动力)的影响。

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