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CONSTRAINING THE MOVEMENT OF THE SPIRAL FEATURES AND THE LOCATIONS OF PLANETARY BODIES WITHIN THE AB AUR SYSTEM

机译:在AB Aur系统中限制螺旋形特征的运动和行星体的位置

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摘要

We present a new analysis of multi-epoch, H-band, scattered light images of the AB Aur system. We use a Monte Carlo radiative transfer code to simultaneously model the system's spectral energy distribution (SED) and H-band polarized intensity (PI) imagery. We find that a disk-dominated model, as opposed to one that is envelope-dominated, can plausibly reproduce AB Aur's SED and near-IR imagery. This is consistent with previous modeling attempts presented in the literature and supports the idea that at least a subset of AB Aur's spirals originate within the disk. In light of this, we also analyzed the movement of spiral structures in multi-epoch H-band total light and PI imagery of the disk. We detect no significant rotation or change in spatial location of the spiral structures in these data, which span a 5.8-year baseline. If such structures are caused by disk-planet interactions, the lack of observed rotation constrains the location of the orbit of planetary perturbers to be >47 au.
机译:我们提出了AB Aur系统的多历时,H波段,散射光图像的新分析。我们使用蒙特卡洛辐射转移码同时对系统的光谱能量分布(SED)和H波段极化强度(PI)图像进行建模。我们发现,与磁盘为主的模型相比,磁盘为主的模型可以合理地再现AB Aur的SED和近红外图像。这与文献中先前提出的建模尝试是一致的,并且支持AB Aur螺旋的至少一个子集起源于磁盘的想法。有鉴于此,我们还分析了多周期H波段总光中的螺旋结构运动以及磁盘的PI图像。我们在这些数据中没有发现明显的旋转或螺旋结构的空间位置变化,这些数据跨越了5.8年的基线。如果这样的结构是由盘-行星相互作用引起的,则缺乏观测到的自转会限制行星扰动器的轨道位置> 47 au。

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