An extended scattered light disk around AT Pyx -- Possible planet formation in a cometary globule
arXiv:2111.11077 · doi:10.1051/0004-6361/202142269
Abstract
To understand how the multitude of planetary systems that have been discovered come to be, we need to study systems at different evolutionary stages, with different central stars but also in different environments. The most challenging environment for planet formation may be the harsh UV radiation field of nearby massive stars which quickly erodes disks by external photo-evaporation. We have observed the AT Pyx system, located in the head of a cometary globule in the Gum Nebula, to search for signs of ongoing planet formation. We used the extreme adaptive optics imager VLT/SPHERE to observe AT Pyx in polarized light as well as total intensity in the J, H and K-band. Additionally we employed VLT/NACO to observe the system in the L-band. We resolve the disk around AT Pyx in scattered light across multiple wavelengths. We find an extended (>126 au) disk, with an intermediate inclination between 35 deg and 42 deg. The disk shows complex sub-structure and we identify 2 and possibly 3 spiral-like features. Depending on the precise geometry of the disk (which we can not unambiguously infer from our data) the disk may be eccentric with an eccentricity of ~0.16 or partially self-shadowed. The spiral features and possible eccentricity are both consistent with signatures of an embedded gas giant planet equal in mass to Jupiter. Our own observations can rule out brown dwarf companions embedded in the resolved disk, but are not sensitive enough to detect gas giants. AT Pyx is the first disk in a cometray globule in the Gum Nebula which is spatially resolved. By comparison with disks in the Orion Nebula Cluster we note that the extension of the disk may be exceptional for this environment if the external UV radiation field is comparable to other cometary globules in the region. The signposts of ongoing planet formation are intriguing and need to be followed up with higher sensitivity.
11 pages, 9 figures, accepted for publication in A&A
References in corpus (23)
- Gaia Early Data Release 3: The astrometric solution
- Two accreting protoplanets around the young star PDS 70
- An Optical Spectroscopic Study of T Tauri Stars. I. Photospheric Properties
- Shadows cast by a warp in the HD 142527 protoplanetary disk
- Gaia Early Data Release 3: Summary of the contents and survey properties
- The Photoevaporation of Discs Around Young Stars in Massive Clusters
- Performance of the VLT Planet Finder SPHERE II. Data analysis and Results for IFS in laboratory
- Direct detection of scattered light gaps in the transitional disk around HD 97048 with VLT/SPHERE
- ALMA Observations of the Orion Proplyds
- The polarimetric imaging mode of VLT/SPHERE/IRDIS II: Characterization and correction of instrumental polarization effects
- CSI 2264: Probing the inner disks of AA Tau-like systems in NGC 2264
- The polarimetric imaging mode of VLT/SPHERE/IRDIS I: Description, data reduction and observing strategy
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): Late infall causing disk misalignment and dynamic structures in SU Aur
- Multiple rings in the transition disk and companion candidates around RXJ1615.3-3255. High contrast imaging with VLT/SPHERE
- No Clear, Direct Evidence for Multiple Protoplanets Orbiting LkCa 15: LkCa 15 bcd are Likely Inner Disk Signals
- Proplyds and Massive Disks in the Orion Nebula Cluster Imaged with CARMA and SMA
- CSI 2264: Characterizing Young Stars in NGC 2264 with Short-Duration, Periodic Flux Dips in their Light Curves
- Perturbers: SPHERE detection limits to planetary-mass companions in protoplanetary disks
- Multiple spiral arms in the disk around intermediate-mass binary HD 34700A
- Gap, shadows, spirals, streamers: SPHERE observations of binary-disk interactions in GG Tau A
- Polarized Light Imaging of the HD 142527 Transition Disk with the Gemini Planet Imager: Dust around the Close-in Companion
- The Spiral Wave Instability Induced by a Giant Planet: I. Particle Stirring in the Inner Regions of Protoplanetary Disks
- Kinematics of the Young Stellar Objects associated with the Cometary Globules in the Gum Nebula
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- Planet formation via pebble accretion in externally photoevaporating discs
- ISPY-NACO Imaging Survey for Planets around Young stars. The demographics of forming planets embedded in protoplanetary disks
- A model grid for the reflected light from transition disks
- Planet-forming disks and their environment across regions and time from the full NIR census
- Astrometric view of companions in the inner dust cavities of protoplanetary disks
- Chemistry of Dark Molecular Clouds