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Direct detection of scattered light gaps in the transitional disk around HD 97048 with VLT/SPHERE

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arxiv 1609.04027 v1 pith:YNZMAP6O submitted 2016-09-13 astro-ph.EP

Direct detection of scattered light gaps in the transitional disk around HD 97048 with VLT/SPHERE

classification astro-ph.EP
keywords disksurfaceheightlightscatteredwellangulararound
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We studied the well known circumstellar disk around the Herbig Ae/Be star HD 97048 with high angular resolution to reveal undetected structures in the disk, which may be indicative of disk evolutionary processes such as planet formation. We used the IRDIS near-IR subsystem of the extreme adaptive optics imager SPHERE at the ESO/VLT to study the scattered light from the circumstellar disk via high resolution polarimetry and angular differential imaging. We imaged the disk in unprecedented detail and revealed four ring-like brightness enhancements and corresponding gaps in the scattered light from the disk surface with radii between 39 au and 341 au. We derived the inclination and position angle as well as the height of the scattering surface of the disk from our observational data. We found that the surface height profile can be described by a single power law up to a separation ~270 au. Using the surface height profile we measured the scattering phase function of the disk and found that it is well consistent with theoretical models of compact dust aggregates. We discuss the origin of the detected features and find that low mass (< 1 M_Jup) nascent planets are a possible explanation.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Interpreting the scattering surface in protoplanetary disks

    astro-ph.EP 2026-06 unverdicted novelty 6.0

    Semi-analytical model links observed scattering-surface height to small-dust mass, yielding global mass fractions of order 10^{-3} consistent with modest grain growth in ten protoplanetary disks.

  2. Analysis of the young disk around WRAY 15-1880: does it contain a primitive planetary system?

    astro-ph.SR 2026-06 unverdicted novelty 4.0

    A candidate 0.3-7.6 MJup companion is reported in the gap of the ~2.8 Myr pre-transitional disk around WRAY 15-1880, with an ALMA blob interpreted as a vortex at the m=1 Lindblad resonance.