论文标题

与Herschel III一起探索银河光环的灰尘含量。 NGC 891

Exploring the Dust Content of Galactic Halos with Herschel III. NGC 891

论文作者

Yoon, J. H., Martin, Crystal L., Veilleux, S., Melendez, M., Mueller, T., Gordon, K. D., Cecil, G., Bland-Hawthorn, J., Engelbracht, C.

论文摘要

我们介绍了用Herschel空间天文台和Spitzer空间望远镜获得的附近边缘Galaxy NGC 891的深远红外观测。该地图证实了从内膜培养基(Halo)(光晕)的热发射的检测,并在空间上解析了尘土飞扬的超级泡沫和灰尘刺(细丝)。光环成分的尘埃温度低于磁盘的尘埃温度,但直径〜8.0 kpc的区域升高,从磁盘的一侧垂直延伸至少7.7 kpc,我们称之为超级气泡,因为它与热X射线发射的关联,并且在同步体尺度中最小。这种流出正在穿过厚的磁盘并发展为银河风,这特别是感兴趣的,因为NGC 891不被认为是星爆的星系。恒星形成速率表面密度为0.03 msun/年平方千乘积和气体分数,内部磁盘仅10%,表明风形成的阈值低于以前的工作所建议的。我们得出的结论是,恒星形成表面密度足以使超级吹入光环中,但是宇宙射线电子在确定该流出是否发展成喷泉或从重力潜力中逃脱时可能起关键作用。灰尘刺激中的高灰尘与气体比表明,通过与NGC 891的磁盘相撞将材料从NGC 891中撤出。我们得出结论,NGC 891提供了一个反馈和卫星相互作用的示例,并将卫星相互作用运输到典型的Galaxy的光环中。

We present deep far-infrared observations of the nearby edge-on galaxy NGC 891 obtained with the Herschel Space Observatory and the Spitzer Space Telescope. The maps confirm the detection of thermal emission from the inner circumgalactic medium (halo) and spatially resolve a dusty superbubble and a dust spur (filament). The dust temperature of the halo component is lower than that of the disk but increases across a region of diameter ~8.0 kpc extending at least 7.7 kpc vertically from one side of the disk, a region we call a superbubble because of its association with thermal X-ray emission and a minimum in the synchrotron scaleheight. This outflow is breaking through the thick disk and developing into a galactic wind, which is of particular interest because NGC 891 is not considered a starburst galaxy; the star formation rate surface density, 0.03 Msun/year per square kiloparsec, and gas fraction, just 10% in the inner disk, indicate the threshold for wind formation is lower than previous work has suggested. We conclude that the star formation surface density is sufficient for superbubble blowout into the halo, but the cosmic ray electrons may play a critical role in determining whether this outflow develops into a fountain or escapes from the gravitational potential. The high dust-to-gas ratio in the dust spur suggests the material was pulled out of NGC 891 through the collision of a minihalo with the disk of NGC 891. We conclude that NGC 891 offers an example of both feedback and satellite interactions transporting dust into the halo of a typical galaxy.

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