论文标题

HD 114082附近的高极化磁盘,带有木星大小的透明行星

The high-albedo, low polarization disk around HD 114082 harbouring a Jupiter-sized transiting planet

论文作者

Engler, N., Milli, J., Gratton, R., Ulmer-Moll, S., Vigan, A., Lagrange, A. -M., Kiefer, F., Rubini, P., Grandjean, A., Schmid, H. M., Messina, S., Squicciarini, V., Olofsson, J., Thébault, P., van Holstein, R. G., Janson, M., Ménard, F., Marshall, J. P., Chauvin, G., Lendl, M., Bhowmik, T., Boccaletti, A., Bonnefoy, M., del Burgo, C., Choquet, E., Desidera, S., Feldt, M., Fusco, T., Girard, J., Gisler, D., Hagelberg, J., Langlois, M., Maire, A. -L., Mesa, D., Meyer, M. R., Rabou, P., Rodet, L., Schmidt, T., Zurlo, A.

论文摘要

我们介绍了F型星HD 114082周围的碎屑盘的新的光学和近IR图像。我们获得了直接成像观测值,并分析了该目标的TESS光度时间表时间序列数据,目的是寻找行星伴侣并搜索行星伴侣并表征Debris Disk和debris Disk和dust颗粒颗粒的散射特性的形态。使用VLT/Sphere仪器观察到HD 114082:K频段中的IRDIS摄像头以及使用ADI技术以及I_PRIME频段中的Y,J和H频段中的IFS以及IRDIS使用PDI技术中的IRDIS。将散射的光图像配备了一个3D模型,用于在光学薄的灰尘磁盘中进行单个散射。我们进行了光圈光度法,以得出磁盘中尘埃颗粒的散射和极化相函数,极化分数和光谱散射反照率。该方法还用于获得磁盘的反射率谱,以检索磁盘的颜色并研究与碎屑盘HD 117214相比。我们还使用苔丝使用Planet Transit和StellAR活动的模型来构造了HD 114082光曲线的建模,从而使PlaneT和Stellar活性在距离上进行了构成约束。 The debris disk appears as an axisymmetric debris belt with a radius of ~0.37$"$ (35 au), inclination of ~83$^\circ$ and a wide inner cavity. Dust particles in HD 114082 have a maximum polarization fraction of ~17% and a high reflectivity which results in a spectral scattering albedo of 0.65. The analysis of TESS photometric data reveals a transiting planetary companion到HD 114082,半径为$ \ sim $ 1〜 $ \ rm r_ {j} $,在轨道上具有$ 0.7 \ pm 0.4 $ au的半轴轴。 JUP} $ 30 au的中央恒星。

We present new optical and near-IR images of debris disk around the F-type star HD 114082. We obtained direct imaging observations and analysed the TESS photometric time series data of this target with a goal to search for planetary companions and to characterise the morphology of the debris disk and the scattering properties of dust particles. HD 114082 was observed with the VLT/SPHERE instrument: the IRDIS camera in the K band together with the IFS in the Y, J and H band using the ADI technique as well as IRDIS in the H band and ZIMPOL in the I_PRIME band using the PDI technique. The scattered light images were fitted with a 3D model for single scattering in an optically thin dust disk. We performed aperture photometry in order to derive the scattering and polarized phase functions, polarization fraction and spectral scattering albedo for the dust particles in the disk. This method was also used to obtain the reflectance spectrum of the disk to retrieve the disk color and study the dust reflectivity in comparison to the debris disk HD 117214. We also performed the modeling of the HD 114082 light curve measured by TESS using the models for planet transit and stellar activity to put constraints on radius of the detected planet and its orbit. The debris disk appears as an axisymmetric debris belt with a radius of ~0.37$"$ (35 au), inclination of ~83$^\circ$ and a wide inner cavity. Dust particles in HD 114082 have a maximum polarization fraction of ~17% and a high reflectivity which results in a spectral scattering albedo of 0.65. The analysis of TESS photometric data reveals a transiting planetary companion to HD 114082 with a radius of $\sim$1~$\rm R_{J}$ on an orbit with a semi-major axis of $0.7 \pm 0.4$ au. Combining different data, we reach deep sensitivity limits in terms of companion masses down to ~5$M_{\rm Jup}$ at 50 au, and ~10 $M_{\rm Jup}$ at 30 au from the central star.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源