论文标题

重力年轻恒星对象调查III。 RY LUP的尘土飞扬的磁盘

The GRAVITY young stellar object survey III. The dusty disk of RY Lup

论文作者

GRAVITY Collaboration, Bouarour, Y. -I., Perraut, K., Ménard, F., Brandner, W., Garatti, A. Caratti o, Caselli, P., van Dishoeck, E., Dougados, C., Garcia-Lopez, R., Grellmann, R., Henning, T., Klarmann, L., Labadie, L., Natta, A., Sanchez-Bermudez, J., Thi, W. -F., de Zeeuw, P. T., Amorim, A., Bauböck, M., Benisty, M., Berger, J. -P., Clenet, Y., Foresto, V. Coudé du, Duvert, G., Eckart, A., Eisenhauer, F., Eupen, F., Filho, M., Gao, F., Garcia, P., Gendron, E., Genzel, R., Gillessen, S., Jiménez-Rosales, A., Jocou, L., Hippler, S., Horrobin, M., Hubert, Z., Kervella, P., Lacour, S., Bouquin, J. -B. Le, Léna, P., Ott, T., Paumard, T., Perrin, G., Pfuhl, O., Rousset, G., Scheithauer, S., Shangguan, J., Stadler, J., Straub, O., Straubmeier, C., Sturm, E., Vincent, F. H., von Fellenberg, S. D., Widmann, F., Wiest, M.

论文摘要

我们使用来自ESO档案的Pionier数据和2017年6月使用的4台8M望远镜获得的重力数据。我们使用参数磁盘模型和3D辐射传输代码mcfost来重现光谱能分布并匹配干涉测量值。为了匹配SED,我们的模型需要2.5 LSUN的出色光度,高于任何先前确定的值。需要如此高的价值来适应由高度倾斜的磁盘引起的差异,这在先前的研究中已经忽略了。在使用高分辨率光谱法确定的4800 K有效温度时,我们得出了2.29 RSUN的恒星半径。这些修订后的基本参数与可用的质量估计相结合时,与狼疮关联年龄相比,与先前的决定更加一致。我们的磁盘模型很好地再现了干涉重力数据,并且与先驱者非常吻合。我们从中央恒星中得出一个0.12〜AU的内部轮辋位置。该模型对应于50DEG内部磁盘的倾斜度,该磁盘与先前从Sphere(NIR中的70度)和ALMA(67 $ \ pm $ 5 ge)的更倾斜的外磁盘确定的倾斜度相对应,但与ALMA COSPESTRA(55 $ \ pm $ 5DEG)的倾斜度确定。将内盘的倾斜度增加到70度导致较高的视线灭绝,因此需要较高的恒星光度为4.65 LSUN,以匹配观察到的通量水平。这种亮度将转化为3.13〜rsun的恒星半径,导致2-3〜ma的年龄,而恒星质量约为2 msun,与观察到的动态质量估计值分歧为1.3-1.5 msun。至关重要的是,这种高倾斜的内磁盘模型也无法再现具有重力观察到的可见性。

We use PIONIER data from the ESO archive and GRAVITY data that were obtained in June 2017 with the four 8m telescopes. We use a parametric disk model and the 3D radiative transfer code MCFOST to reproduce the Spectral Energy Distribution and match the interferometric observations. To match the SED , our model requires a stellar luminosity of 2.5 Lsun, higher than any previously determined values. Such a high value is needed to accommodate the circumstellar extinction caused by the highly inclined disk, which has been neglected in previous studies. While using an effective temperature of 4800 K determined through high-resolution spectroscopy, we derive a stellar radius of 2.29 Rsun. These revised fundamental parameters, when combined with the mass estimates available , lead to an age of 0.5-2.0 Ma for RY Lup, in better agreement with the age of the Lupus association than previous determinations. Our disk model nicely reproduces the interferometric GRAVITY data and is in good agreement with the PIONIER ones. We derive an inner rim location at 0.12~au from the central star. This model corresponds to an inclination of the inner disk of 50deg, which is in mild tension with previous determinations of a more inclined outer disk from SPHERE (70 deg in NIR) and ALMA(67 $\pm$5 deg) images, but consistent with the inclination determination from the ALMA CO spectra (55$\pm$5deg). Increasing the inclination of the inner disk to 70 deg leads to a higher line-of-sight extinction and therefore requires a higher stellar luminosity of 4.65 Lsun to match the observed flux levels. This luminosity would translate to a stellar radius of 3.13~Rsun, leading to an age of 2-3~Ma, and a stellar mass of about 2 Msun, in disagreement with the observed dynamical mass estimate of 1.3-1.5 Msun. Critically, this high-inclination inner disk model also fails to reproduce the visibilities observed with GRAVITY.

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