论文标题
然后它们是两个:从两个失控的星星的弓冲击中检测非热无线电发射
And then they were two: detection of non-thermal radio emission from the bow shocks of two runaway stars
论文作者
论文摘要
最近,来自大型恒星的风被认为是研究相对论粒子加速的有前途的地点。特别是,在多个波长下观察到了失控恒星与星际物质的风相互作用产生的弓形冲击。在这里,我们研究了O4IF星BD+433654,到目前为止,其弓形冲击是唯一在无线电频率下热和非热辐射的弓形冲击。我们还将NGC7635视为弓形冲击候选者,并检查其最高点,以指示热和非热无线电发射。我们在4-8 GHz和8-12 GHz的VLA和Effelsberg望远镜的4-8 GHz时都观察到了VLA的来源。我们分别分析了两个望远镜的数据,并合并了,获得了光谱指数图并计算了它们的光谱能量分布。我们介绍了NGC7635的第一个无线电发射的高分辨率地图。我们发现,两者都在无线电制度中发出非热发射,最明确的NGC7635证据。对于BD+433654而言,我们的结果较少,因为在较高的无线电频率下,其弓形冲击的发射变得较弱且淡淡。我们的结果将BD+433654 BOW冲击的先前无线电结果扩展到较高的频率。我们对两个来源的数据进行建模表明,在风终止冲击处加速的电子是非热无线电发射的合理来源,但是能量论的论证表明,任何非热X射线和$γ$ - 射线的发射都可能显着低于现有上限。辐射弓休克中压缩银河宇宙射线的增强同步加速器发射也可以解释BD+433654弓休克的无线电发射,而不是NGC7635。 BD+433654的点状无线电发射的未检测使恒星的质量损失率的上限低于文献中引用的值。 [简略]
Winds from massive stars have recently been deemed promising sites for investigating relativistic particle acceleration. Particularly, the resulting bow shock from the interaction of the winds of runaway stars with interstellar matter has been observed at multiple wavelengths. Here we investigate the O4If star, BD+433654, the bow shock of which is, so far, the only one proven to radiate both thermally and non-thermally at radio frequencies. We also consider NGC7635 as a bow shock candidate and examine its apex for indications of thermal and non-thermal radio emission. We observed both sources with the VLA at 4-8 GHz and 8-12 GHz, and with the Effelsberg telescope at 4-8 GHz. We analysed data from both telescopes individually and combined, obtained their spectral index maps and calculated their Spectral Energy Distributions. We present the first high-resolution maps of radio emission from NGC7635. We find that both emit non-thermal emission in the radio regime, with the clearest evidence for NGC7635. Our results are less conclusive for BD+433654, as the emission from its bow shock becomes weaker and fainter at higher radio frequencies. Our results extend the previous radio results for the BD+433654 bow shock to higher frequencies. Modelling of our data for both sources shows that accelerated electrons at the wind termination shock are a plausible source for the non-thermal radio emission, but energetics arguments suggest that any non-thermal X-ray and $γ$-ray emission could be significantly below existing upper limits. Enhanced synchrotron emission from compressed Galactic cosmic rays in the radiative bow shock could also explain the radio emission from the BD+433654 bow shock but not NGC7635. Non-detection of point-like radio emission from BD+433654 puts an upper limit on the mass-loss rate of the star that is lower than values quoted in the literature. [abridged]