Context. An essential step to understanding protoplanetary evolution is the study of disks that contain gaps or inner holes. The pre-transitional disk around the Herbig star HD 169142 exhibits multi-gap disk structure, differentiated gas and dust distribution, planet candidates, and near-infrared fading in the past decades, which make it a...
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2018 (v1)Journal articleUploaded on: December 4, 2022
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February 2017 (v1)Journal article
International audience
Uploaded on: December 4, 2022 -
2022 (v1)Journal articleThe disk of FU Orionis viewed with MATISSE/VLTI. First interferometric observations in L and M bands
Aims: We studied the accretion disk of the archetypal eruptive young star FU Orionis with the use of mid-infrared interferometry, which enabled us to resolve the innermost regions of the disk down to a spatial resolution of 3 milliarcseconds (mas) in the L band, that is, within 1 au of the protostar. Methods: We used the interferometric...
Uploaded on: December 3, 2022