论文标题
通过热不稳定性形成的CR驱动的多相气体
CR Driven Multi-phase Gas Formed via Thermal Instability
论文作者
论文摘要
宇宙射线(CRS)是影响多相气体结构和动力学的圆周循环(CGM)中的重要能源。我们执行二维CR-MAGNETODRODENARINANIC模拟,以研究CRS在加速通过热不稳定性形成的多相气体中的作用。我们将CRS驱动的流出与那些以同等动力驱动的人进行比较。我们发现,由于非热压支持,CRS驱动的流出流出在冷和热气体之间产生较低的密度对比度,并产生更丝状的云形态。虽然在热风中夹带会导致由于有效的冷却而导致冷气增加,但CRS倾向于抑制冷气体的生长。这种抑制的机制取决于磁场强度,CRS可以通过差分加速度减少冷却或切碎云。尽管抑制了冷气生长,但CRS仍能够将冷云发射到观察到的速度而不会迅速破坏的情况下。 CRS AD多相气体之间的动力相互作用也对磁场强度敏感。在相对较强的田地中,CRS对于直接动量输入冷气更为重要。在相对较弱的场中,CRS主要通过加热影响气体,从而改变气体压力。
Cosmic rays (CRs) are an important energy source in the circum-galactic medium (CGM) that impact the multi-phase gas structure and dynamics. We perform two-dimensional CR-magnetohydrodynamic simulations to investigate the role of CRs in accelerating multi-phase gas formed via thermal instability. We compare outflows driven by CRs to those driven by a hot wind with equivalent momentum. We find that CRs driven outflow produces lower density contrast between cold and hot gas due to non-thermal pressure support, and yields a more filamentary cloud morphology. While entrainment in a hot wind can lead to cold gas increasing due to efficient cooling, CRs tend to suppress cold gas growth. The mechanism of this suppression depends on magnetic field strength, with CRs either reducing cooling or shredding the clouds by differential acceleration. Despite the suppression of cold gas growth, CRs are able to launch the cold clouds to observed velocities without rapid destruction. The dynamical interaction between CRs ad multi-phase gas is also sensitive to the magnetic field strength. In relatively strong fields, the CRs are more important for direct momentum input to cold gas. In relatively weak fields, the CRs impact gas primarily by heating, which modifies gas pressure.