论文标题

恒星形成区域中的宇宙射线扩散抑制抑制了富含气体的星系的结块形成

Cosmic-Ray Diffusion Suppression in Star-forming Regions Inhibits Clump Formation in Gas-rich Galaxies

论文作者

Semenov, Vadim A., Kravtsov, Andrey V., Caprioli, Damiano

论文摘要

观察到$γ$ - 射线簇周围的发射,孤立的超新星残留物和脉冲星风星云表明,与银河平均值相比,可以抑制宇宙射线(CR)扩散系数接近加速度位点。我们使用具有规则和高气体分数的隔离磁盘星系模拟了这种局部抑制Cr扩散对星系进化的影响。我们的结果表明,尽管具有恒定扩散率的CR传播可以通过增加平面压力来使气体盘更加稳定,但大规模CR压力梯度在磁盘不稳定时无法防止局部碎片化。相反,当CR扩散率在恒星形成区域抑制时,这些区域中CRS的积累会导致强大的局部压力梯度,从而防止形成大量的气态团块。结果,密集的气体和恒星形成的分布在质量上发生了变化:全球不稳定的气态磁盘不会将巨大的恒星形成团块分成巨大的碎片,而是保持常规的大型设计螺旋结构。这种作用调节了恒星形成和磁盘结构,并且在质量上与CRS在气态磁盘的垂直静水站支持和驱动银河风中的全球作用上有质量不同。

Observations of the $γ$-ray emission around star clusters, isolated supernova remnants, and pulsar wind nebulae indicate that the cosmic-ray (CR) diffusion coefficient near acceleration sites can be suppressed by a large factor compared to the Galaxy average. We explore the effects of such local suppression of CR diffusion on galaxy evolution using simulations of isolated disk galaxies with regular and high gas fractions. Our results show that while CR propagation with constant diffusivity can make gaseous disks more stable by increasing the midplane pressure, large-scale CR pressure gradients cannot prevent local fragmentation when the disk is unstable. In contrast, when CR diffusivity is suppressed in star-forming regions, the accumulation of CRs in these regions results in strong local pressure gradients that prevent the formation of massive gaseous clumps. As a result, the distribution of dense gas and star formation changes qualitatively: a globally unstable gaseous disk does not violently fragment into massive star-forming clumps but maintains a regular grand-design spiral structure. This effect regulates star formation and disk structure and is qualitatively different from and complementary to the global role of CRs in vertical hydrostatic support of the gaseous disk and in driving galactic winds.

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