论文标题

一个两个过渡磁盘的故事:iso-oph 2的阿尔玛长基线观察结果揭示了两个紧密挤满的非轴对称环和一个$ \ sim $ 2 $ 2 au腔

A Tale of Two Transition Disks: ALMA long-baseline observations of ISO-Oph 2 reveal two closely packed non-axisymmetric rings and a $\sim$2 au cavity

论文作者

González-Ruilova, Camilo, Cieza, Lucas A., Hales, Antonio S., Pérez, Sebastián, Zurlo, Alice, Arce-Tord, Carla, Casassus, Simón, Cánovas, Hector, Flock, Mario, Herczeg, Gregory J., Pinilla, Paola, Price, Daniel J., Principe, David A., Ruíz-Rodríguez, Dary, Williams, Jonathan P.

论文摘要

ISO-o-o-2是一个宽分开(240 au)二进制系统,其中主要恒星在其中具有巨大的(m $ _ {dust} $ $ \ sim $ \ sim $ 40 m $ _ {\ oplus} $),类似duck $ \ sim $ sim $ 50 au in Radius和中学主机$ $ $ __ $ __ { m $ _ {\ oplus} $)磁盘。作为使用ALMA的“ Ophiuchus磁盘调查”(ODISEA)项目的高分辨率随访的一部分,我们提出了1.3毫米连续体和$^{12} $ CO CO CO分子线观测到系统的02(3 AU)分辨率。我们将磁盘周围的磁盘分解为两个非轴对称环,发现次级周围的磁盘仅为$ \ sim $ 7 au,并且还具有灰尘腔(r $ \ sim $ 2.2 au)。基于系统的红外通量比和主要的M0光谱类型,我们估计该伴侣的质量接近棕色矮人极限。因此,我们得出的结论是,ISO-OPH 2系统包含最大和最小的腔体,最小的磁盘尺寸以及最低的质量对象周围的已解决的腔(M $ _ {\ Star} $ \ sim $ \ sim $ 0.08 m $ _ $ _ \ odot $)在Ophiuchus中。从$^{12} $ CO数据中,我们找到了连接两个磁盘的气桥。虽然围绕主要的环的形态可能是由于腔体内看不见的干扰者,但我们推测桥梁可能表明一种替代场景,其中二次恒星在其磁盘上造成方位角不​​对称。因此,ISO-OPH 2系统是研究磁盘进化,行星形成和伴随盘相互作用的非凡实验室。

ISO-Oph 2 is a wide-separation (240 au) binary system where the primary star harbors a massive (M$_{dust}$ $\sim$40 M$_{\oplus}$) ring-like disk with a dust cavity $\sim$50 au in radius and the secondary hosts a much lighter (M$_{dust}$ $\sim$0.8 M$_{\oplus}$) disk. As part of the high-resolution follow-up of the "Ophiuchus Disk Survey Employing ALMA" (ODISEA) project, we present 1.3 mm continuum and $^{12}$CO molecular line observations of the system at 0''02 (3 au) resolution. We resolve the disk around the primary into two non-axisymmetric rings and find that the disk around the secondary is only $\sim$7 au across and also has a dust cavity (r $\sim$2.2 au). Based on the infrared flux ratio of the system and the M0 spectral type of the primary, we estimate the mass of the companion to be close to the brown dwarf limit. Hence, we conclude that the ISO-Oph 2 system contains the largest and smallest cavities, the smallest measured disk size, and the resolved cavity around the lowest mass object (M$_{\star}$ $\sim$0.08 M$_\odot$) in Ophiuchus. From the $^{12}$CO data, we find a bridge of gas connecting both disks. While the morphology of the rings around the primary might be due to an unseen disturber within the cavity, we speculate that the bridge might indicate an alternative scenario in which the secondary has recently flown by the primary star causing the azimuthal asymmetries in its disk. The ISO-Oph 2 system is therefore a remarkable laboratory to study disk evolution, planet formation, and companion-disk interactions.

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