论文标题

压力测试宇宙射线物理:宇宙射线对尚存的RAM压力剥离星系的影响

Stress-Testing Cosmic Ray Physics: The Impact of Cosmic Rays on the Surviving Disk of Ram Pressure Stripped Galaxies

论文作者

Farber, Ryan Jeffrey, Ruszkowski, Mateusz, Tonnesen, Stephanie, Holguin, Paco

论文摘要

由于RAM压力剥离,与磁盘中观察到的恒星形成的灾难性的螺旋星系遭受了其星际介质的凉爽,中性气体成分的灾难性损失,与较低密度环境中的星系相比,磁盘中观察到的恒星形成的淬灭。然而,RAM压力对脱落剥离的星系的恒星形成速率和AGN活性的短期影响尚不清楚。数值研究最近表明,宇宙射线可以极大地影响孤立星系的星系进化,但它们对RAM压力剥离的影响仍然很差。我们对$ l _ {*} $ GALAXY进行RAM压力剥离的$ L _ {*} $ GALAXY进行了第一个宇宙射线磁动力模拟,包括辐射冷却,气体的自我实力,恒星形成和出色的反馈。我们发现,与孤立的螺旋形相比,宇宙射线的微观传输在调节螺旋型群体中所经历的恒星形成增强方面起着关键作用。此外,我们发现接受RAM压力剥离的星系在其中心表现出增强的气体积聚,这可能解释了这些物体中AGN的流行。与观察结果一致,我们发现宇宙射线显着增强了集群螺旋的全球无线电发射。尽管气体去除率对宇宙射线物理学相对不敏感,但我们发现宇宙射线显着改变了其余气盘的相分布。这些结果表明,观察经过RAM压力剥离的星系可能会对宇宙射线量热法和运输的新限制。

Cluster spiral galaxies suffer catastrophic losses of the cool, neutral gas component of their interstellar medium due to ram pressure stripping, contributing to the observed quenching of star formation in the disk compared to galaxies in lower density environments. However, the short term effects of ram pressure on the star formation rate and AGN activity of galaxies undergoing stripping remain unclear. Numerical studies have recently demonstrated cosmic rays can dramatically influence galaxy evolution for isolated galaxies, yet their influence on ram pressure stripping remains poorly constrained. We perform the first cosmic-ray magneto-hydrodynamic simulations of an $L_{*}$ galaxy undergoing ram pressure stripping, including radiative cooling, self-gravity of the gas, star formation, and stellar feedback. We find the microscopic transport of cosmic rays plays a key role in modulating the star formation enhancement experienced by spirals at the outskirts of clusters compared to isolated spirals. Moreover, we find that galaxies undergoing ram pressure stripping exhibit enhanced gas accretion onto their centers, which may explain the prevalence of AGN in these objects. In agreement with observations, we find cosmic rays significantly boost the global radio emission of cluster spirals. Although the gas removal rate is relatively insensitive to cosmic ray physics, we find that cosmic rays significantly modify the phase distribution of the remaining gas disk. These results suggest observations of galaxies undergoing ram pressure stripping may place novel constraints on cosmic-ray calorimetry and transport.

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