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An ALMA/NOEMA study of gas dissipation and dust evolution in the 5 Myr-old HD 141569A hybrid disc

机译:ALMA / NOEMA研究5 MYR-旧的HD 141569A混合盘 <相关对象对象=“ Tablecds“source-id =”http://cdsarc.u-strasbg.fr/viz-bin/cat/j/aadía/635/a94“source-id-type =”url“/>

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Context. The study of gas-rich debris discs is fundamental to characterising the transition between protoplanetary discs and debris discs. Aims. We determine the physical parameters of the brightest gas-rich debris disc orbiting HD 141569A. Methods. We analyse images from the NOrthern Extended Millimeter Array (NOEMA)~(1)and the Atacama Large Millimeter/ submillimeter Array (ALMA) in~(12)CO,~(13)CO J = 2 → 1, and~(13)CO J = 1 → 0 transitions. We incorporate ALMA archival data of the~(12)CO J = 3 → 2 transition and present continuum maps at 0.87, 1.3, and 2.8 mm. We use simple parametric laws with the Diskfit code and MCMC exploration to characterise the gas disc parameters and report a first attempt to characterise its chemical content with IRAM-30 m. Results. The continuum emission is equally shared between a compact (?50 au) and a smooth, extended dust component (~350 au). Large millimetre grains seem to dominate the inner regions, while the dust spectral index is marginally larger in the outer region. The~(12)CO is optically thick, while~(13)CO is optically thin with τ _(~(13)CO)~ 0.15 (C~(18)O is not detected). The~(13)CO surface density is constrained to be one order of magnitude smaller than around younger Herbig Ae stars, and we derive a gas mass M _(~(12)CO)= 10~(?1) M _(⊕). We confirm the presence of a small CO cavity ( R _(CO)= 17 ± 3 au), and find a possibly larger radius for the optically thin~(13)CO J = 2 → 1 transition (35 ± 5 au). We show that the observed CO brightness asymmetry is coincident with the complex ring structures discovered with VLT/SPHERE in the inner 90 au. The~(12)CO temperature T _(0)(100 au) ~ 30 K is lower than expected for a Herbig A0 star, and could be indicative of subthermal excitation. Conclusions. With the largest amount of dust and gas among hybrid discs, HD 141569A shows coincident characteristics of both protoplanetary discs (central regions), and debris discs at large distance. Together with its morphological characteristics and young age, it appears to be a good candidate to witness the transient phase of gas dissipation, with an apparently large gas-to-dust ratio ( G ∕ D > 100) favouring a faster evolution of dust grains.
机译:语境。富含气体的碎片盘的研究是表征原文象椎间盘和碎片盘之间的过渡的基础。目标。我们确定最亮的气体碎气碎片圆盘轨道HD 141569A的物理参数。方法。我们分析来自北部扩展毫米阵列(Noema)〜(1)和Atacama大毫米/亚颌骨阵列(Alma)的图像在〜(12)Co,〜(13)Co J = 2→1,〜(13)中CO J = 1→0转换。我们将Alma归档数据纳入〜(12)CO J = 3→2转换,并在0.87,1.3和2.8 mm时显示连续体图。我们使用简单的参数法使用DiskFit代码和MCMC探索,以表征燃气盘参数,并报告第一次尝试将其与IRAM-30米的化学含量表征。结果。连续排放在紧凑(Δ50AU)和光滑的延长粉尘组分(〜350AU)之间同样分享。大毫米颗粒似乎主导内部区域,而外部区域的粉尘光谱指数在略微较大。 〜(12)Co光学厚,而〜(13)CO光学薄,τ_(〜(13)CO)〜0.15(C〜(18)o未检测到)。 〜(13)CO表面密度受到比较年轻的植物AE恒星小的一个数量级,我们导出气体质量M _(〜(12)CO)= 10〜(?1)M _(⊕ )。我们确认存在小CO腔(R _(CO)= 17±3 AU),并找到光学薄〜(13)CO J = 2→1转变(35±5 AU)的可能更大的半径。我们表明观察到的CO亮度不对称与在内部90Au中的VLT /球体发现的复杂环结构重合。 〜(12)CO温度T _(0)(100AU)〜30 k低于Herbig A0星的预期,并且可以指示分解激发。结论。在混合盘中的灰尘和气体量最大,HD 141569A示出了大距离的原始圆盘(中央区域)和碎屑盘的重合特性。与其形态特征和年轻时一起,它似乎是一个良好的候选者,以便见证气体耗散的瞬态阶段,具有显然大的气 - 除尘比(G / D> 100),优先达到更快的粉尘颗粒的进化。

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