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MINDS: JWST/NIRCam Imaging of the Protoplanetary Disk PDS 70 A Spiral Accretion Stream and a Potential Third Protoplanet

Astronomy and Astrophysics(2024)SCI 2区

Katholieke Univ Leuven | Max Planck Inst Astron MPIA | Univ Groningen | Univ Liege | Univ Paris | Univ Paris Saclay | Leiden Univ | Univ Wien | CSIC INTA | INAF Osservatorio Astron Capodimonte | Swiss Fed Inst Technol | Stockholms Univ | Dublin Inst Adv Studies | Radboud Univ Nijmegen | Max Planck Inst Extraterr Phys MPE

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Abstract
Context. Two protoplanets have recently been discovered within the PDS 70 protoplanetary disk. JWST/NIRCam offers a unique opportunity to characterize them and their birth environment at wavelengths that are difficult to access from the ground. Aims. We image the circumstellar environment of PDS 70 at 1.87 mu m and 4.83 mu m, assess the presence of Pa-alpha emission due to accretion onto the protoplanets, and probe any IR excess indicative of heated circumplanetary material. Methods. We obtained noncoronagraphic JWST /NIRCam images of PDS 70 within the MIRI mid-INfrared Disk Survey (MINDS) program. We leveraged the Vortex Image Processing (VIP) package for data reduction, and we developed dedicated routines for optimal stellar point spread function subtraction, unbiased imaging of the disk, and protoplanet flux measurement in this type of dataset. A radiative transfer model of the disk was used to separate the contributions from the disk and the protoplanets. Results. We redetect both protoplanets and identify extended emission after subtracting a disk model, including a large-scale spiral-like feature. We interpret its signal in the direct vicinity of planet c as tracing the accretion stream that feeds its circumplanetary disk, while the outer part of the feature may rather reflect asymmetric illumination of the outer disk. We also report a bright signal that is consistent with a previously proposed protoplanet candidate enshrouded in dust near the 1:2:4 mean-motion resonance with planets b and c. The 1.87 mu m flux of planet b is consistent with atmospheric model predictions, but the flux of planet c is not. We discuss potential origins for this discrepancy, including significant Pa-alpha line emission. The 4.83 mu m fluxes of planets b and c suggest enshrouding dust or heated CO emission from their circumplanetary environment. Conclusions. The use of image-processing methods that are optimized for extended disk signals on high-sensitivity and high-stability from JWST can uniquely identify signatures of planet-disk interactions and enable accurate photometry of protoplanets at wavelengths that are difficult to probe from the ground. Our results indicate that more protoplanets can be identified and characterized in other JWST datasets.
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planets and satellites: detection,planets and satellites: formation,planets and satellites: gaseous planets,protoplanetary disks,planet-disk interactions
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要点】:本文利用JWST/NIRCam对PDS 70原行星盘进行成像,发现了螺旋状吸积流和潜在的第三颗原行星,揭示了行星与盘的相互作用特征。

方法】:通过MIRI mid-INfrared Disk Survey (MINDS)项目获取PDS 70的非掩星JWST/NIRCam图像,使用Vortex Image Processing (VIP)软件进行数据处理,并开发专门程序以优化恒星点扩散函数的减除、无偏成像盘面及测量原行星流量。

实验】:通过分析1.87 μm和4.83 μm波长的数据,重新检测到两颗原行星,并识别出盘模型减去后的扩展发射,包括一个大规模的螺旋状特征,使用辐射传输模型分离盘和原行星的贡献,发现与先前提出的一个被尘埃包裹的原行星候选体一致的明亮信号。