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首页> 外文期刊>Astronomy and astrophysics >Jet creation in post-AGB binaries: the circum-companion accretion disk around BD+46°442
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Jet creation in post-AGB binaries: the circum-companion accretion disk around BD+46°442

机译:在AGB后二进制文件中的喷气机创建:BD + 46°围绕BD + 46°442的循环伴随磁盘

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摘要

Aims. We aim at describing and understanding binary interaction processes in systems with very evolved companions. Here, we focus on understanding the origin and determining the properties of the high-velocity outflow observed in one such system. Methods. We present a quantitative analysis of BD+46 ° 442, a post-AGB binary that shows active mass transfer that leads to the creation of a disk-driven outflow or jet. We obtained high-resolution optical spectra from the HERMES spectrograph, mounted on the 1.2 m Flemish Mercator Telescope. By performing a time-series analysis of the H α profile, we identified the different components of the system. We deduced the jet geometry by comparing the orbital phased data with our jet model. In order to image the accretion disk around the companion of BD+46 ° 442, we applied the technique of Doppler tomography. Results. The orbital phase-dependent variations in the H α profile can be related to an accretion disk around the companion, from which a high-velocity outflow or jet is launched. Our model shows that there is a clear correlation between the inclination angle and the jet opening angle. The latitudinally dependent velocity structure of our jet model shows a good correspondence to the data, with outflow velocities higher than at least 400 km s ~(-1) . The intensity peak in the Doppler map might be partly caused by a hot spot in the disk, or by a larger asymmetrical structure in the disk. Conclusions. We show that BD+46 ° 442? is a result of a binary interaction channel. The origin of the fast outflow in this system might be to a gaseous disk around the secondary component, which is most likely a main-sequence star. Our analysis suggests that the outflow has a rather wide opening angle and is not strongly collimated. Our time-resolved spectral monitoring reveals the launching site of the jet in the binary BD+46 ° 442. Similar orbital phase-dependent H α profiles are commonly observed in post-AGB binaries. Post-AGB binaries provide ideal test beds to study jet formation and launching mechanisms over a wide range of orbital conditions.
机译:目标。我们的目标是在具有非常进化的同伴中描述和了解系统中的二进制交互过程。这里,我们专注于理解原点并确定在一个这样的系统中观察到的高速流出的性质。方法。我们呈现了BD + 46°442的定量分析,这是AGB后二进制的主动传质,其导致磁盘驱动的流出或喷射的产生。我们获得了来自Hermes光谱仪的高分辨率光谱,安装在1.2M佛罗里士州兰卡望远镜上。通过执行Hα简介的时间序列分析,我们识别了系统的不同组件。我们通过将轨道相控算数据与我们的喷射模型进行比较来推导出喷射几何。为了在BD + 46°442的伴侣周围图像图像,我们应用了多普勒断层扫描的技术。结果。 Hα分布中的轨道相位依赖性变化可以与伴侣周围的吸积盘有关,从中启动高速流出或喷射。我们的模型表明,倾斜角和喷射开口角之间存在明显的相关性。我们喷射模型的纬度依赖性速度结构显示出与数据的良好对应关系,流出速度高于至少400 km s〜(-1)。多普勒地图中的强度峰值可以部分地由盘中的热点或通过磁盘中的较大不对称结构引起。结论。我们展示了BD + 46°442?是二进制交互通道的结果。该系统中快速流出的起源可能是辅助分量周围的气体盘,这很可能是一个主序星。我们的分析表明流出具有相当宽的开口角度,并且不会强烈准直。我们的时间分辨光谱监测揭示了二进制BD + 46°442中喷射的发射部位。在AGB二进制中,通常观察到类似的轨道相位依赖性Hα曲线。后AGB二进制文件提供理想的测试床,用于研究喷射形成和在各种轨道条件下发射机制。

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