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首页> 外文期刊>Astronomy and astrophysics >Variability and dust filtration in the transition disk J160421.7-213028 observed in optical scattered light
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Variability and dust filtration in the transition disk J160421.7-213028 observed in optical scattered light

机译:在光学散射光中观察到过渡盘J160421.7-213028中的变化和灰尘过滤

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摘要

Context. Protoplanetary disks around young stars are the birth-sites of planets. Spectral energy distributions and direct images of a subset of disks known as transition disks reveal dust-depleted inner cavities. Some of these disks show asymmetric structures in thermal submillimetre emission and optical scattered light. These structures can be the result of planet(s) or companions embedded in the disk. Aims. We aim to detect and analyse the scattered light of the transition disk J160421.7-213028, identify disk structures, and compare the results with previous observations of this disk at other wavelengths. Methods. We obtained and analysed new polarised intensity observations of the transition disk J160421.7-213028 with VLT/SPHERE using the visible light instrument ZIMPOL at R′-band (0.626 μm). We probed the disk gap down to a radius of confidence of 0.1′′ (~15 AU at 145 pc). We interpret the results in the context of dust evolution when planets interact with the parental disk. Results. We observe a gap from 0.1 to 0.3′′ (~15 to 40 AU) and a bright annulus as previously detected by HiCIAO H-band observations at 1.65μm. The radial width of the annulus is around 40 AU, and its centre is at ~61 AU from the central star. The peak of the reflected light at 0.626 μm is located 20 AU inward of the cavity detected in the submillimetre. In addition, we detect a dip at a position angle of ~46.2 ± 5.4°. A dip was also detected with HiCIAO, but located at ~85°. If the dip observed with HiCIAO is the same, this suggests an average dip rotation of ~12°/year, which is inconsistent with the local Keplerian angular velocity of ~0.8°/yr at ~61 AU. Conclusions. The spatial discrepancy in the radial emission in J160421.7-213028 at different wavelengths is consistent with dust filtration at the outer edge of a gap carved by a massive planet. The dip rotation can be interpreted as fast variability of the inner disk and/or the presence of a warp or circumplanetary material of a planet at ~9.6 AU.
机译:上下文。年轻恒星周围的原行星盘是行星的诞生地。称为过渡盘的磁盘子集的光谱能量分布和直接图像显示出粉尘耗尽的内腔。其中一些光盘在亚毫米级热发射和光学散射光中显示出不对称结构。这些结构可能是行星或嵌入磁盘的同伴的结果。目的我们旨在检测和分析过渡盘J160421.7-213028的散射光,识别盘结构,并将结果与​​该盘在其他波长下的先前观察结果进行比较。方法。我们使用可见光仪器ZIMPOL在R'波段(0.626μm)使用VLT / SPHERE获得并分析了过渡盘J160421.7-213028的新偏振强度观测结果。我们将磁盘间隙探查到置信半径为0.1''(在145 pc下约为15 AU)。当行星与母盘相互作用时,我们将在尘埃演化的背景下解释结果。结果。我们观察到0.1到0.3'(〜15到40 AU)之间的间隙和一个明亮的环形空间,该环形空间是先前由HiCIAO H波段观测到的1.65μm探测到的。环的径向宽度约为40 AU,其中心距离中心恒星约〜61 AU。反射光的峰值为0.626μm,位于在亚毫米中检测到的空腔的内部20 AU处。此外,我们在〜46.2±5.4°的位置角处检测到倾角。还使用HiCIAO检测到倾斜,但位于〜85°。如果用HiCIAO观测到的倾角相同,则表明平均倾角旋转为〜12°/年,这与在〜61 AU处的局部Keplerian角速度〜0.8°/ yr不一致。结论。 J160421.7-213028中不同波长的径向发射在空间上的差异与由大型行星形成的间隙的外边缘处的灰尘过滤一致。倾角旋转可以解释为内圆盘的快速变化和/或行星在〜9.6 AU处存在翘曲或外行星材料。

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