论文标题
圆盘界面的积极反馈
Positive feedback at the disc-halo interface
论文作者
论文摘要
银河系(MW)的平坦恒星形成(SF)历史需要在银河系中补充银河盘中的气体,这很可能来自银河系外的水库。可以通过一种“正”反馈形式来实现这种补充,从而使SF反馈产生一个银河喷泉循环,从而从银河系周围的热光晕中收集并冷却了其他气体。在本文中,我们为MW提供了此过程的模型。允许银河圆盘的一部分形成恒星,随后爆炸为超新星(SNE)并将气体送入热光晕。发出的气体比热光环气体冷,并且随着混合物倒入银河系盘的含量,晕气体被冷却,为进一步的SF提供了燃料。我们发现,这个过程足以在MW至少3 GYR上维持MW中大致恒定的冷气质量。我们的结果进一步表明,有一个积极的反馈趋势,即SF的增加导致平均SF速率以低于0.5太阳能质量的平均值增加,但高于该速率,但在此变为负面,在此进一步增加SFR会导致冷气预算减少。我们为此构建了一个分析模型,该模型很好地再现了数据,并且可能对反馈主导的制度中的星系演变具有深远的影响。
The flat star formation (SF) history of the Milky Way (MW) requires gas in the Galactic disc to be replenished, most likely from a reservoir outside the Galaxy. Such a replenishment may be achieved by a form of `positive' feedback, whereby SF feedback creates a Galactic fountain cycle that collects and cools additional gas from the hot halo surrounding the Galaxy. In this paper we present a model of this process for the MW. A section of the Galactic disc is allowed to form stars which subsequently explode as supernovae (SNe) and send gas out into the hot halo. The gas that is sent out is colder than the hot halo gas and, as it mixes, the halo gas is cooled, providing fuel for further SF as the mixture falls back onto the Galactic disc. We find that this process can be sufficient to maintain a roughly-constant cold gas mass in the MW over at least 3 Gyr. Our results further suggest that there is a positive feedback trend whereby increasing SF leads to an increase in the cold gas budget at average SF rates below 0.5 solar masses per year but above which becomes negative, where further increasing the SFR causes the cold gas budget to decrease. We have constructed an analytical model for this that reproduces the data well and could have profound implications for galaxy evolution in feedback-dominated regimes.