论文标题

两颗狼射线星是碰撞二进制APEP的核心

Two Wolf-Rayet stars at the heart of colliding-wind binary Apep

论文作者

Callingham, J. R., Crowther, P. A., Williams, P. M., Tuthill, P. G., Han, Y., Pope, B. J. S., Marcote, B.

论文摘要

碰撞二进制APEP的红外成像揭示了具有复杂的内部动力学的壮观灰尘羽流,挑战了标准碰撞的二进制物理学。如果快速旋转的狼射线恒星位于系统的核心,则可以解决此类挑战,这将APEP作为银河系祖细胞系统与长期伽马射线爆发。解释APEP动力学的困难之一是系统中恒星的光谱组成尚不清楚。在这里,我们向近红外光谱展示了视觉,表明APEP的中心成分由碳(WC8)和氮气序列(WN4-6B)亚型的两个经典的狼射线星组成。我们认为,这样的任务代表了银河系中经典的WR+WR二进制系统的最强案例。 WC8和WN4-6B星星的终端风速速度分别为$ 2100 \ pm 200 $和$ 3500 \ pm 100 $ km s $ s $^{ - 1} $。如果这两颗恒星的质量损失率是其光谱类别的典型特征,则相撞风的动量比率预计为$ \ $ \ $ \ $ 0.4。由于灰尘羽流的膨胀速度明显小于任何一个测得的末端速度之一,因此我们探索了这样的建议:狼射线风是各向异性的。如果WC8恒星产生明显缓慢的赤道风,并且速度约为$ \ $ \ $ 530 km S $^{ - 1} $,则可以恢复与观察到的尘埃膨胀速度一致的冲击风速。这样的缓慢风速可以通过狼射线星的近乎危机旋转来驱动。

Infrared imaging of the colliding-wind binary Apep has revealed a spectacular dust plume with complicated internal dynamics that challenges standard colliding-wind binary physics. Such challenges can be potentially resolved if a rapidly-rotating Wolf-Rayet star is located at the heart of the system, implicating Apep as a Galactic progenitor system to long-duration gamma-ray bursts. One of the difficulties in interpreting the dynamics of Apep is that the spectral composition of the stars in the system was unclear. Here we present visual to near-infrared spectra that demonstrate that the central component of Apep is composed of two classical Wolf-Rayet stars of carbon- (WC8) and nitrogen-sequence (WN4-6b) subtypes. We argue that such an assignment represents the strongest case of a classical WR+WR binary system in the Milky Way. The terminal line-of-sight wind velocities of the WC8 and WN4-6b stars are measured to be $2100 \pm 200$ and $3500 \pm 100$ km s$^{-1}$, respectively. If the mass-loss rate of the two stars are typical for their spectral class, the momentum ratio of the colliding winds is expected to be $\approx$ 0.4. Since the expansion velocity of the dust plume is significantly smaller than either of the measured terminal velocities, we explore the suggestion that one of the Wolf-Rayet winds is anisotropic. We can recover a shock-compressed wind velocity consistent with the observed dust expansion velocity if the WC8 star produces a significantly slow equatorial wind with a velocity of $\approx$530 km s$^{-1}$. Such slow wind speeds can be driven by near-critical rotation of a Wolf-Rayet star.

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