论文标题

对紧凑型高速云的物理影响

Physical effects on compact high-velocity clouds in the circumgalactic medium

论文作者

Sander, Bastian, Hensler, Gerhard

论文摘要

我们通过应用自适应网状改进代码闪光灯,通过数值研究了紧凑的高速云(CHVC)的演变,该云通过热,脆弱的气体(CGM)。 模型云始于静水和热平衡,并与CGM处于压力平衡。在这里,我们提出了14个模型,分为两个质量类别和两个金属性和不同的速度。我们是否允许自我实力和热传导。所有模型都会均经历质量扩散,辐射冷却和外部加热,从而导致解离和电离。 我们的主要发现是:1)自我重力使云稳定在瑞利 - 泰勒的不稳定中,这些不稳定在没有的10个声音越过的时间内被破坏; 2)云可以在内部开发牛仔裤,即使它们最初低于牛仔裤质量; 3)所有云因RAM压力和开尔文 - 螺旋杆菌的不稳定性而失去质量; 4)热传导大大降低了质量损失率,从而延长了云的寿命,特别是使低质量云的寿命增加了一倍以上; 5)热传导会导致连续的丝状剥离,而去除的气体会迅速加热,并与环境CGM有效混合; 6)如果没有热传导,则除去的气体由致密,凉爽,块状碎片组成; 7)热传导可能会阻止CHVC形成恒星; 8)云通过从环境CGM形成头尾形状的拖动而减速并在达到中间速度云的速度特征后塌陷。 最后,只有将CHVC作为具有热传导和自我重度的非同质性和非等热云进行的复杂建模可以解释观察到的形态,并且自然会导致抑制恒星形成。

We numerically investigate the evolution of compact high-velocity clouds (CHVCs) passing through a hot, tenuous gas representing the highly-ionized circumgalactic medium (CGM) by applying the adaptive-mesh refinement code FLASH. The model clouds start from both hydrostatic and thermal equilibrium and are in pressure balance with the CGM. Here, we present 14 models, divided into two mass categories and two metallicities each and different velocities. We allow for self-gravity and thermal conduction or not. All models experience mass diffusion, radiative cooling, and external heating leading to dissociation and ionization. Our main findings are: 1) self-gravity stabilizes clouds against Rayleigh-Taylor instability which are disrupted within 10 sound-crossing times without; 2) clouds can develop Jeans-instable regions internally even though they are initially below Jeans mass; 3) all clouds lose mass by ram pressure and Kelvin-Helmholtz instability; 4) thermal conduction substantially lowers mass-loss rates, by this, extending the clouds' lifetimes, particularly, more than doubling the lifetime of low-mass clouds; 5) thermal conduction leads to continuous, filamentary stripping, while the removed gas is heated up quickly and mixes efficiently with the ambient CGM; 6) without thermal conduction the removed gas consists of dense, cool, clumpy fragments; 7) thermal conduction might prevent CHVCs from forming stars; 8) clouds decelerated by means of drag from the ambient CGM form head-tail shapes and collapse after they reach velocities characteristic for intermediate-velocity clouds. Conclusively, only sophisticated modelling of CHVCs as non-homogeneous and non-isothermal clouds with thermal conduction and self-gravity explains observed morphologies and naturally leads to the suppression of star formation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源