论文标题

气泡星云NGC 7635-测试风吹气泡理论

The Bubble Nebula NGC 7635 -- testing the wind-blown bubble theory

论文作者

Toalá, J. A., Guerrero, M. A., Todt, H., Sabin, L., Oskinova, L. M., Chu, Y. -H., Ramos-Larios, G., Gómez-González, V. M. A.

论文摘要

我们提出了标志性气泡星云(NGC 7635)及其电离星BD $+$ 60 $^{\ circ} $ 2522的多波长研究。我们获得了XMM-Newton Epic X射线观测值,就像在大型恒星周围的其他类似的风吹出的气泡中一样,搜索扩展的X射线发射。我们还通过曼彻斯特梯队光谱仪进行了SanPedroMártir光谱观测,以研究气泡星云的动力学。尽管我们的史诗般的观察结果很深,但我们并未检测到这种风吹起来的X射线发射。另一方面,bd $+$ 60 $^{\ circ} $ 2522是一个明亮的X射线源,类似于其他O星。我们使用了恒星气氛代码POWR来表征BD $+$ 60 $^{\ CIRC} $ 2522,发现这颗恒星是一颗年轻的O型星,具有恒星风能产生风吹泡的气泡,原则上可以充满热气。我们讨论了我们的发现,该发现与最近的数值模拟一致,该发现提出了气泡星云是由于BD $+$ 60 $^{\ CRICC} $ 2522通过介质而形成的。我们的运动学研究表明,气泡星云由一系列嵌套的壳组成,有些显示出泡沫状结构,但很少有流体动力学不稳定性的特征,这些功能会混合产生的材料弥散性X射线发射,如其他风能中所见。它的形态似乎仅仅是这些不同壳的投影效应的结果。

We present a multiwavelength study of the iconic Bubble Nebula (NGC 7635) and its ionising star BD$+$60$^{\circ}$2522. We obtained XMM-Newton EPIC X-ray observations to search for extended X-ray emission as in other similar wind-blown bubbles around massive stars. We also obtained San Pedro Mártir spectroscopic observations with the Manchester Echelle Spectrometer to study the dynamics of the Bubble Nebula. Although our EPIC observations are deep, we do not detect extended X-ray emission from this wind-blown bubble. On the other hand, BD$+$60$^{\circ}$2522 is a bright X-ray source similar to other O stars. We used the stellar atmosphere code PoWR to characterise BD$+$60$^{\circ}$2522 and found that this star is a young O-type star with stellar wind capable of producing a wind-blown bubble that in principle could be filled with hot gas. We discussed our findings in line with recent numerical simulations proposing that the Bubble Nebula has been formed as the result of the fast motion of BD$+$60$^{\circ}$2522 through the medium. Our kinematic study shows that the Bubble Nebula is composed by a series of nested shells, some showing blister-like structures, but with little signatures of hydrodynamical instabilities that would mix the material producing diffuse X-ray emission as seen in other wind-blown bubbles. Its morphology seems to be merely the result of projection effects of these different shells.

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