论文标题

磁盘进化研究通过附近的年轻恒星(Destinys)的成像:Do Tau的复杂千au环境的全面视图

Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): A Panchromatic View of DO Tau's Complex Kilo-au Environment

论文作者

Huang, Jane, Ginski, Christian, Benisty, Myriam, Ren, Bin, Bohn, Alexander J., Choquet, Élodie, Öberg, Karin I., Ribas, Álvaro, Bae, Jaehan, Bergin, Edwin A., Birnstiel, Til, Boehler, Yann, Facchini, Stefano, Harsono, Daniel, Hogerheijde, Michiel, Long, Feng, Manara, Carlo F., Ménard, François, Pinilla, Paola, Pinte, Christophe, Rab, Christian, Williams, Jonathan P., Zurlo, Alice

论文摘要

虽然普通行星磁盘通常被视为行星形成模型中的孤立系统,但观察结果越来越多地表明,II类磁盘及其环境之间的剧烈相互作用并不罕见。 Do Tau是Tauri Star,以前曾被认为与HV Tau系统进行了密切相遇。作为Destinys ESO大型程序的一部分,我们提出了Do Tau的新VLT/Sphere极化观察结果,并将它们与CO同位素学和CS的档案HST HST散射光图像和ALMA观察结合在一起,以映射复杂结构的网络。球体和阿尔玛的观察结果表明,双磁盘与武器连接到数百个au。 HST和Alma还揭示了Do Tau东北的溪流状结构,其中一些结构至少为几千au。这些流在重力上似乎并不是进行tau的重力,并且与以前的Herschel Far-far-far-far-far-far-far-far-far-far-far-far-tau的比较表明,这些流是连接do tau和hv tau的桥梁状结构的一部分。我们还检测到一个卑鄙的红移对应物,与先前已知的BlueShift Co Froffly。尽管DO TAU的某些复杂结构可以归因于最近的磁盘磁盘遇到,但可以通过与恒星形成过程中的残余材料的相互作用来解释它们。这些对Do Tau的观察结果强调了需要通过检查在较大尺寸尺度上发生的过程来将II类磁盘演变的发展。

While protoplanetary disks are often treated as isolated systems in planet formation models, observations increasingly suggest that vigorous interactions between Class II disks and their environments are not rare. DO Tau is a T Tauri star that has previously been hypothesized to have undergone a close encounter with the HV Tau system. As part of the DESTINYS ESO Large Programme, we present new VLT/SPHERE polarimetric observations of DO Tau and combine them with archival HST scattered light images and ALMA observations of CO isotopologues and CS to map a network of complex structures. The SPHERE and ALMA observations show that the circumstellar disk is connected to arms extending out to several hundred au. HST and ALMA also reveal stream-like structures northeast of DO Tau, some of which are at least several thousand au long. These streams appear not to be gravitationally bound to DO Tau, and comparisons with previous Herschel far-IR observations suggest that the streams are part of a bridge-like structure connecting DO Tau and HV Tau. We also detect a fainter redshifted counterpart to a previously known blueshifted CO outflow. While some of DO Tau's complex structures could be attributed to a recent disk-disk encounter, they might be explained alternatively by interactions with remnant material from the star formation process. These panchromatic observations of DO Tau highlight the need to contextualize the evolution of Class II disks by examining processes occurring over a wide range of size scales.

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