论文标题

围绕逃亡的狼射线星星在戒指上

On the ring nebulae around runaway Wolf-Rayet stars

论文作者

Meyer, D. M. -A., Oskinova, L. M., Pohl, M., Petrov, M.

论文摘要

狼射线星是大型恒星的高级进化阶段。尽管它们的质量较高和大风速度,但它们都没有表现出弓形冲击,尽管其中的一小部分被归类为失控。我们在60mo失控的星星上显示,我们的2.5-d数值模拟很重要,即快速的狼射线恒星风被释放到一个充满各种冲击和整个先例进化阶段产生的电击的风腔中。所得的快速慢速相互作用导致形成扫掠的尘土质材料的球形壳,类似于与Spitzer近红外24微米中观察到的材料相似的,并且似乎与巨大的巨星共同移动,无论其适当的运动和/或局部环境介质的特性如何。我们将围绕银河平面的狼射线恒星(如WR138A)解释为明亮的红外环,以表明它们很高的初始质量和复杂的进化历史。随着恒星在稀释的介质中奔跑,恒星风弓的冲击变得微弱,因此,我们的结果解释了银河狼射线星周围没有检测到的弓形冲击,例如高纬度,非常快速移动的物体WR71,WR124和WR148。我们的结果表明,缺乏弓箭与某些狼射线星的失控性一致。这质疑高纬度狼射线星的原位恒星形成场景,支持银河平面中的出生地的动态弹射。

Wolf-Rayet stars are advanced evolutionary stages of massive stars. Despite their large mass-loss rates and high wind velocities, none of them display a bow shock, although a fraction of them are classified as runaway. Our 2.5-D numerical simulations of circumstellar matter around a 60Mo runaway star show that the fast Wolf-Rayet stellar wind is released into a wind-blown cavity filled with various shocks and discontinuities generated throughout the precedent evolutionary phases. The resulting fast-wind slow-wind interaction leads to the formation of spherical shells of swept-up dusty material similar to those observed in near infrared 24 micron with Spitzer, and which appear to be co-moving with the runaway massive stars, regardless of their proper motion and/or the properties of the local ambient medium. We interpret bright infrared rings around runaway Wolf-Rayet stars in the Galactic plane, like WR138a, as indication of their very high initial masses and a complex evolutionary history. Stellar-wind bow shocks become faint as stars run in diluted media, therefore, our results explain the absence of detected bow shocks around Galactic Wolf-Rayet stars such as the high-latitude, very fast-moving objects WR71, WR124 and WR148. Our results show that the absence of a bow shock is consistent with a runaway nature of some Wolf-Rayet stars. This questions the in-situ star formation scenario of high-latitude Wolf-Rayet stars in favor of dynamical ejection from birth sites in the Galactic plane.

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