论文标题
从单个HAE/BE Star HD 100546发现喷气机
Discovery of a jet from the single HAe/Be star HD 100546
论文作者
论文摘要
年轻的积聚星星驱动出流到喷气机的流出,可以从他们的驱动来源中看到数百个AU。随着系统年龄的增长和流出活动停止,据信磁中心发射的磁盘风是通过原球门磁盘调节积聚的关键代理。 Protostellar jets are well studied in classical T~Tauri stars ($M_\star\lesssim2\,M_\odot$), while few nearby ($d\lesssim150\,$pc) intermediate-mass stars ($M_\star=2-10\,M_\odot$), known as Herbig Ae/Be stars, have detected jets.我们报告了Herbig〜Ae/Be Star HD〜100546的VLT/Muse观察结果和发现Protostellar喷气机。该喷气机的外观与由低质量恒星驱动的喷气机相似,并且与HD〜163296的射流良好,这是唯一来自附近Herbig〜Ae/Be Star的其他已知的光学喷射。我们在$ \ log \ dot {m} _ {M} _ {JET} \ sim -9.5 $的喷气机中得出了(单方面的)质量损失率(在$ M_ \ odot $ \,yr $ \,yr $^{ - 1} $中),并且流出比率大约是$ 3 \ 3 \ times10^\ 3} $,以下是$ 3 \ 3} $, HD〜100546射流的发现特别有趣,因为HD 〜100546周围的原球磁盘显示出较大的径向间隙,螺旋结构,并且可能构成了一个原球系统。先前在H $α$中看到的带有VLT/SPHERHE的类似条形的结构具有射流位置角,可能代表了喷气机的底部,并建议在约2 \ au中的喷气发射区域。我们得出的结论是,除了几个AU之外,Radii的磁盘的演变不会影响系统发射喷气机的能力。
Young accreting stars drive outflows that collimate into jets, which can be seen hundreds of au from their driving sources. Accretion and outflow activity cease with system age, and it is believed that magneto-centrifugally launched disk winds are critical agents in regulating accretion through the protoplanetary disk. Protostellar jets are well studied in classical T~Tauri stars ($M_\star\lesssim2\,M_\odot$), while few nearby ($d\lesssim150\,$pc) intermediate-mass stars ($M_\star=2-10\,M_\odot$), known as Herbig Ae/Be stars, have detected jets. We report VLT/MUSE observations of the Herbig~Ae/Be star HD~100546 and the discovery of a protostellar jet. The jet is similar in appearance to jets driven by low-mass stars and compares well with the jet of HD~163296, the only other known optical jet from a nearby Herbig~Ae/Be star. We derive a (one-sided) mass-loss rate in the jet of $\log \dot{M}_{jet} \sim -9.5$ (in $M_\odot$\,yr$^{-1}$) and a ratio of outflow to accretion of roughly $3\times10^{-3}$, which is lower than that of CTTS jets. The discovery of the HD~100546 jet is particularly interesting because the protoplanetary disk around HD~100546 shows a large radial gap, spiral structure, and might host a protoplanetary system. A bar-like structure previously seen in H$α$ with VLT/SPHERE shares the jet position angle, likely represents the base of the jet, and suggests a jet-launching region within about 2\,au. We conclude that the evolution of the disk at radii beyond a few au does not affect the ability of the system to launch jets.