Consistent dust and gas models for protoplanetary disks IV. A panchromatic view of protoplanetary disks
arXiv:1902.11204 · doi:10.1051/0004-6361/201832860
Abstract
Consistent modeling of protoplanetary disks requires the simultaneous solution of both continuum and line radiative transfer, heating/cooling balance between dust and gas and, of course, chemistry. Such models depend on panchromatic observations that can provide a complete description of the physical and chemical properties and energy balance of protoplanetary systems. Along these lines we present a homogeneous, panchromatic collection of data on a sample of 85 T Tauri and Herbig Ae objects for which data cover a range from X-rays to centimeter wavelengths. Datasets consist of photometric measurements, spectra, along with results from the data analysis such as line fluxes from atomic and molecular transitions. Additional properties resulting from modeling of the sources such as disc mass and shape parameters. dust size and PAH properties are also provided for completeness. Targets were selected based on their properties data availability. Data from more than 50 different telescopes and facilities were retrieved and combined in homogeneous datasets directly from public data archives or after being extracted from more than 100 published articles. X-ray data for a subset of 56 sources represent an exception as they were reduced from scratch and are presented here for the first time. Compiled datasets along with a subset of continuum and emission-line models are stored in a dedicated database and distributed through a publicly accessible online system. All datasets contain metadata descriptors that allow to backtrack them to their original resources. The graphical user interface of the online system allows the user to visually inspect individual objects but also compare between datasets and models. It also offers to the user the possibility to download any of the stored data and metadata for further processing.
32 pages, 11 figures, A&A accepted
References in corpus (32)
- An Optical Spectroscopic Study of T Tauri Stars. I. Photospheric Properties
- Monte Carlo radiative transfer in protoplanetary disks
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- A Submillimeter View of Circumstellar Dust Disks in Ophiuchus
- The c2d Spitzer spectroscopic survey of ices around low-mass young stellar objects II: CO2
- The Stellar Population of the Chamaeleon I Star-Forming Region
- On the Diversity of the Taurus Transitional Disks: UX Tau A & Lk Ca 15
- Radiative transfer in very optically thick circumstellar disks
- Constraining the X-ray and Cosmic Ray Ionization Chemistry of the TW Hya Protoplanetary Disk: Evidence for a Sub-interstellar Cosmic Ray Rate
- On the gas content of transitional disks: a VLT/X-Shooter study of accretion and winds
- Parameters of Herbig Ae/Be and Vega-type stars
- c2d Spitzer IRS Spectra of Disks around T Tauri Stars. III. [Ne II], [Fe I], and H_2 gas-phase lines
- Disks around CQ Tau and MWC 758: dense PDR or gas dispersal?
- The Gaia-ESO Survey: Chromospheric Emission, Accretion Properties, and Rotation in Velorum and Chamaeleon I
- Investigating grain growth in disks around southern T Tauri stars at millimetre wavelengths
- The evolution of stars in the Taurus-Auriga T association
- Measuring tiny mass accretion rates onto young brown dwarfs
- Consistent dust and gas models for protoplanetary disks: II. Chemical networks and rates
- Revealing Asymmetries in the HD 181327 Debris Disk: A Recent Massive Collision or ISM Warping
- The depletion of water during dispersal of planet-forming disk regions
- Accretion-related properties of Herbig Ae/Be stars. Comparison with T Tauris
- Comparison of the dust and gas radial structure in the transition disk [PZ99] J160421.7-213028
- Calibrated griz magnitudes of Tycho stars: All-sky photometric calibration using bright stars
- Large grains in disks around young stars: ATCA observations of WW Cha, RU Lup, and CS Cha
- Constraining the structure of the transition disk HD 135344B (SAO 206462) by simultaneous modeling of multiwavelength gas and dust observations
- A Search for Mid-Infrared Molecular Hydrogen Emission from Protoplanetary Disks
- The TEXES Survey For H2 Emission From Protoplanetary Disks
- Mass and Temperature of the TWA 7 Debris Disk
- Stellar parameters and accretion rate of the transition disk star HD 142527 from X-Shooter
- Signatures of warm carbon monoxide in protoplanetary discs observed with Herschel SPIRE
- HCO+ Detection of Dust-Depleted Gas in the Inner Hole of the LkCa 15 Pre-Transitional Disk
Cited by in corpus (12)
- The Chemical Inventory of the Inner Regions of Planet-forming Disks -- The JWST/MINDS Program
- A novel way of measuring the gas disk mass of protoplanetary disks using N2H+ and C18O
- Detection of HC18O+ in a protoplanetary disk: exploring oxygen isotope fractionation of CO
- Analysing the SEDs of protoplanetary disks with machine learning
- Different degrees of nitrogen and carbon depletion in the warm molecular layers of protoplanetary disks
- The inner disk of RY Tau: evidence of stellar occultation by the disk atmosphere at the sublimation rim from K-band continuum interferometry
- Quantitative polarimetry of the disk around HD 169142
- Gap Opening and Inner Disk Structure in the Strongly Accreting Transition Disk of DM Tau
- Constraints on the gas-phase C/O ratio of DR Tau's outer disk from CS, SO, and CH observations
- New Mid-Infrared Imaging Constraints on Companions and Protoplanetary Disks around six Young Stars
- SHAMPOO: A stochastic model for tracking dust particles under the influence of non-local disk processes
- Water UV-shielding in the terrestrial planet-forming zone: Implications from water emission