论文标题

年轻多系统HD 34700中的尘埃陷阱

A Dust Trap in the Young Multiple System HD 34700

论文作者

Benac, Peyton, Matra, Luca, Wilner, David J., Jimenez-Donaire, Maria J., Monnier, John D., Rich, Evan A., Harries, Tim J., Laws, Anna, Zhang, Qizhou

论文摘要

对年轻恒星周围磁盘的毫米观察结果揭示了可能有助于晶粒生长和行星形成的气压陷阱的子结构。我们介绍了HD 34700-在近距离二进制系统中的两个Herbig Ae星(AA/AB,$ \ sim $ 0.25 au)中的超毫升阵列观测值,周围环绕着一个圆盘,上面呈现出较大的空腔和螺旋臂,在分散的光线下看到,两个遥远的较低的群众。这些观察结果包括1.3毫米的连续排放和$^{12} $ 2-1在$ \ sim0.5 $“(178 au)的分辨率上。它们解决了连续性中突出的空调不对称的,以及在$^{12} $ co in Asymmetry in Asymmetry in asmmetry in asmmetry in asmmetry in as asmmetry insymmets in at as asmmetry in asmmetmemmetry。 $ 155 ^{+11} _ { - 7} $ au,与散落的光腔的边缘一致,在两个半径上都可以解决($ 72 ^{+14} _ { - 15} $ au)和Azimuth和Azimuth(FWHM = $ 64 ^{\ $ 64 ^{\ \ 8} _Emplion covile coipe and osige as prots at inmum as omerty as inmum at inmum as prots as imum asement。对于灰尘陷阱,我们假设$^{12} $ co发射和小晶粒的形态它对该系统的过去重力不稳定的后果可能考虑了环形伴侣的快速形成。

Millimeter observations of disks around young stars reveal substructures indicative of gas pressure traps that may aid grain growth and planet formation. We present Submillimeter Array observations of HD 34700- two Herbig Ae stars in a close binary system (Aa/Ab, $\sim$0.25 AU), surrounded by a disk presenting a large cavity and spiral arms seen in scattered light, and two distant, lower mass companions. These observations include 1.3 mm continuum emission and the $^{12}$CO 2-1 line at $\sim0.5$" (178 AU) resolution. They resolve a prominent azimuthal asymmetry in the continuum, and Keplerian rotation of a circumbinary disk in the $^{12}$CO line. The asymmetry is located at a radius of $155^{+11}_{-7}$ AU, consistent with the edge of the scattered light cavity, being resolved in both radius ($72 ^{+14}_{-15}$ AU) and azimuth (FWHM = $64 ^{\circ +8}_{-7}$). The strong asymmetry in millimeter continuum emission could be evidence for a dust trap, together with the more symmetric morphology of $^{12}$CO emission and small grains. We hypothesize an unseen circumbinary companion, responsible for the cavity in scattered light and creating a vortex at the cavity edge that manifests in dust trapping. The disk mass has limitations imposed by the detection of $^{12}$CO and non-detection of $^{13}$CO. We discuss its consequences for the potential past gravitational instability of this system, likely accounting for the rapid formation of a circumbinary companion. We also report the discovery of resolved continuum emission associated with HD 34700B (projected separation $\sim1850$AU), which we explain through a circumstellar disk.

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