PDS 70⋆外圆盘中偏振散射光的时间和色度变化

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2024-11-19 DOI:10.1051/0004-6361/202451614
J. Ma, C. Ginski, R. Tazaki, C. Dominik, H. M. Schmid, F. Ménard
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引用次数: 0

摘要

背景PDS 70是唯一一个拥有原行星盘和两颗已确认正在形成的行星的系统。它是描述这类盘中尘埃特征的独特目标。我们的目标是精确测量 PDS 70 的反射偏振光强度,并量化其在光学和近红外波段中的多变性和不对称性。我们利用 SPHERE/ZIMPOL 上的 N_R 滤波器对 PDS 70 进行了新的高对比度偏振差分成像观测。我们将新的观测数据与 VLT/SPHERE 仪器的档案数据相结合,这些数据跨越五个波长(N_R、VBB、J、H 和 Ks),历时七个纪元和八年。对于每个观测纪元,我们都校正了因仪器分辨率有限而产生的涂抹效应,测量了方位亮度剖面,并得出了本征圆盘积分偏振反射率和本征亮度对比。通过对 PDS 70 周围所有可用的圆盘光学和近红外数据集进行同质分析,我们发现综合偏振反射率和方位角亮度剖面具有显著的时变性。这表明圆盘内部结构对圆盘外部的遮挡是多变的,超出了目前成像仪器的分辨率极限。尽管存在这些变化,我们还是观测到倾斜圆盘的近侧和远侧之间存在系统的波长相关对比。这些结果突出表明,在分析和解释观测数据时,必须同时考虑内盘的阴影效应和所观测到的反射盘的表面几何形状。
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Temporal and chromatic variation of polarized scattered light in the outer disk of PDS 70⋆
Context. PDS 70 stands out as the only system hosting a protoplanetary disk and two confirmed planets undergoing formation. It is a unique target for characterizing the dust in this type of disk.Aims. We aim to accurately measure the reflected polarized intensity and quantify the variability and asymmetry for PDS 70 across multiple epochs and wavelengths in the optical and near-infrared. We present new high-contrast polarimetric differential imaging observations of PDS 70, with the N_R filter on SPHERE/ZIMPOL.Methods. We combined the new observation with archival data of the VLT/SPHERE instrument, spanning five wavelengths (N_R, VBB, J, H, and Ks) over seven epochs and eight years. For each observational epoch, we corrected the smearing effect due to finite instrument resolution, measured the azimuthal brightness profiles, and derived the intrinsic disk-integrated polarized reflectivity and the intrinsic brightness contrasts.Results. With our homogeneous analysis of all available optical and near-infrared data sets of the disk around PDS 70, we find significant temporal variability of the integrated polarized reflectivity as well as the azimuthal brightness profile. This indicates variable shadowing on the outer disk by inner disk structures beyond the resolution limit of current imaging instruments. Despite these variabilities, we observe a systematic wavelength-dependent contrast between the near side and the far side of the inclined disk. These results underline the importance of considering both the shadowing effect from the inner disk and the surface geometry of the observed reflecting disk in the analysis and interpretation of observational data.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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