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首页> 外文期刊>Astronomy and astrophysics >Shadows and asymmetries in the T Tauri disk HD 143006: evidence for a misaligned inner disk
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Shadows and asymmetries in the T Tauri disk HD 143006: evidence for a misaligned inner disk

机译:T Tauri磁盘HD 143006中的阴影和不对称:内部磁盘未对齐的证据

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Context. While planet formation is thought to occur early in the history of a protoplanetary disk, the presence of planets embedded in disks, or of other processes driving disk evolution, might be traced from their imprints on the disk structure. Aims. We study the morphology of the disk around the T Tauri star HD 143006, located in the ~5–11 Myr-old Upper Sco region, and we look for signatures of the mechanisms driving its evolution. Methods. We observed HD 143006 in polarized scattered light with VLT/SPHERE at near-infrared ( J -band, 1.2 μ m) wavelengths, reaching an angular resolution of ~0.037′′ (~6 au). We obtained two datasets, one with a 145 mas diameter coronagraph, and the other without, enabling us to probe the disk structure down to an angular separation of ~0.06′′ (~10 au). Results. In our observations, the disk of HD 143006 is clearly resolved up to ~0.5′′ and shows a clear large-scale asymmetry with the eastern side brighter than the western side. We detect a number of additional features, including two gaps and a ring. The ring shows an overbrightness at a position angle (PA) of ~140°, extending over a range in position angle of ~60°, and two narrow dark regions. The two narrow dark lanes and the overall large-scale asymmetry are indicative of shadowing effects, likely due to a misaligned inner disk. We demonstrate the remarkable resemblance between the scattered light image of HD 143006 and a model prediction of a warped disk due to an inclined binary companion. The warped disk model, based on the hydrodynamic simulations combined with three-dimensional radiative transfer calculations, reproduces all major morphological features. However, it does not account for the observed overbrightness at PA ~ 140°. Conclusions. Shadows have been detected in several protoplanetary disks, suggesting that misalignment in disks is not uncommon. However, the origin of the misalignment is not clear. As-yet-undetected stellar or massive planetary companions could be responsible for them, and naturally account for the presence of depleted inner cavities.
机译:上下文。虽然人们认为行星的形成是在原行星盘历史的早期发生的,但可以从它们在磁盘结构上的印记来追溯嵌在磁盘中的行星的存在或其他驱动磁盘演化的过程。目的我们研究了位于约5-11岁的Myr上Sco区域中的T Tauri星HD 143006周围盘的形态,并寻找了驱动其演化的机制的标志。方法。我们在具有VLT / SPHERE的偏振散射光中在近红外(J波段,1.2μm)波长处观察到HD 143006,其角分辨率达到〜0.037''(〜6 au)。我们获得了两个数据集,一个具有145 mas直径的日冕仪,另一个没有,使我们能够探测到磁盘结构向下到〜0.06'(〜10 au)的角距。结果。在我们的观察中,HD 143006的磁盘被清晰地解析到了约0.5′′,并且显示出明显的大规模不对称性,其中东侧比西侧亮。我们检测到许多其他功能,包括两个间隙和一个环。环在〜140°的位置角(PA)处显示过亮,并在〜60°的位置角范围内延伸,并有两个狭窄的深色区域。两个狭窄的暗通道和整体的大规模不对称性表明可能是由于内部磁盘未对准而产生的阴影效应。我们展示了HD 143006的散射光图像与由于倾斜的二进制伴奏而导致的翘曲盘的模型预测之间的显着相似。基于流体动力学模拟和三维辐射转移计算的翘曲盘模型可再现所有主要的形态特征。但是,这不能解释在PA〜140°时观察到的过高度。结论。在几个原行星盘中已经检测到阴影,这表明在磁盘中未对准并不少见。但是,未对准的根源尚不清楚。尚未发现的恒星或巨大的行星伴星可能是造成它们的原因,并自然地解释了内部空洞的存在。

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