A homogeneous analysis of disks around brown dwarfs
arXiv:1507.06155 · doi:10.1051/0004-6361/201526153
Abstract
We re-analyzed the Herschel/PACS data of a sample of 55 brown dwarfs (BDs) and very low mass stars with spectral types ranging from M5.5 to L0. We investigated the dependence of disk structure on the mass of the central object in the substellar regime based on a homogeneous analysis of Herschel data from flux density measurements to spectral energy distribution (SED) modeling. A systematic comparison between the derived disk properties and those of sun-like stars shows that the disk flaring of BDs and very low mass stars is generally smaller than that of their higher mass counterparts, the disk mass is orders of magnitude lower than the typical value found in T Tauri stars, and the disk scale heights are comparable in both sun-like stars and BDs. We further divided our sample into an early-type brown dwarf (ETBD) group and a late-type brown dwarf (LTBD) group by using spectral type (=M8) as the border criterion. We systematically compared the modeling results from Bayesian analysis between these two groups, and found the trends of flaring index as a function of spectral type also present in the substellar regime. The spectral type independence of the scale height is also seen between high-mass and very low-mass BDs. However, both the ETBD and LTBD groups feature a similar median disk mass of 10^{-5}Msun and no clear trend is visible in the distribution, probably due to the uncertainty in translating the far-IR photometry into disk mass, the detection bias and the age difference among the sample. Unlike previous studies, our analysis is completely homogeneous in Herschel/PACS data reduction and modeling with a statistically significant sample. Therefore, we present evidence of stellar-mass-dependent disk structure down to the substellar mass regime, which is important for planet formation models. (Abridged Version)
Accepted for publication in A&A
References in corpus (29)
- VOSA: Virtual Observatory SED Analyzer. An application to the Collinder 69 open cluster
- A Submillimeter View of Circumstellar Dust Disks in Ophiuchus
- Structure and evolution of pre-main sequence circumstellar disks
- The Stellar Population of the Chamaeleon I Star-Forming Region
- Protoplanetary disk lifetimes vs stellar mass and possible implications for giant planet populations
- Exploring brown dwarf disks: A 1.3 mm survey in Taurus
- The Disk Population of the Chamaeleon I Star-Forming Region
- A Survey for New Members of Taurus with the Spitzer Space Telescope
- The Atomic and Molecular Content of Disks Around Very Low-mass Stars and Brown Dwarfs
- The Spatial Distribution of Brown Dwarfs in Taurus
- The TW Hydrae Association : trigonometric parallaxes and kinematic analysis
- The young population of the Chamaeleon II dark cloud
- Measuring tiny mass accretion rates onto young brown dwarfs
- Brown dwarf disks with ALMA
- First Confirmed Detection of a Bipolar Molecular Outflow from a Young Brown Dwarf
- An ALMA Continuum Survey of Circumstellar Disks in the Upper Scorpius OB Association
- A Distributed Population of Low Mass Pre-Main Sequence Stars near the Taurus Molecular Clouds
- The properties of discs around planets and brown dwarfs as evidence for disc fragmentation
- Structural and compositional properties of brown dwarf disks: the case of 2MASS J04442713+2512164
- New Brown Dwarf Disks in the TW Hydrae Association
- New Low-Mass Stars and Brown Dwarfs with Disks in Lupus
- Effect of dust grain porosity on the appearance of protoplanetary disks
- A Search for Companions to Brown Dwarfs in the Taurus and Chamaeleon Star Forming Regions
- The Taurus Boundary of Stellar/Substellar (TBOSS) Survey I: far-IR disk emission measured with Herschel
- Silicate Evolution in Brown Dwarf Disks
- Probing Dust Settling in Proto-planetary Disks with ALMA
- The protoplanetary disk of FT Tauri: multi-wavelength data analysis and modeling
- Herschel/PACS view of disks around low-mass stars and brown dwarfs in the TW Hya association
- The disk around the brown dwarf KPNO Tau 3
Cited by in corpus (17)
- Temperate Earth-sized planets transiting a nearby ultracool dwarf star
- Water loss from Earth-sized planets in the habitable zones of ultracool dwarfs: Implications for the planets of TRAPPIST-1
- Brown dwarf disks with ALMA: evidence for truncated dust disks in Ophiuchus
- Bridging the gap between protoplanetary and debris disks: separate evolution of millimeter and micrometer-sized dust
- Diverse outcomes of planet formation and composition around low-mass stars and brown dwarfs
- Protoplanetary Disk Masses from Radiative Transfer Modeling: A Case Study in Taurus
- Hints for Small Disks around Very Low-Mass Stars and Brown Dwarfs
- First millimeter detection of the disk around a young, isolated, planetary-mass object
- The Frequency Of Binary Star Interlopers Amongst Transitional Discs
- A WISE-based search for debris discs amongst M-dwarfs in nearby, young, moving groups
- Spitzer Observations of Long Term Infrared Variability Among Young Stellar Objects in Chamaeleon I
- An ALMA Survey of faint disks in the Chamaeleon I star-forming region: Why are some Class II disks so faint?
- Brown dwarf disks with Herschel: Linking far-infrared and (sub)-mm fluxes
- Disk Masses and Dust Evolution of Protoplanetary Disks Around Brown Dwarfs
- Analysing the SEDs of protoplanetary disks with machine learning
- Millimeter Spectral Indices and Dust Trapping By Planets in Brown Dwarf Disks
- The Perkins INfrared Exosatellite Survey (PINES) I. Survey Overview, Reduction Pipeline, and Early Results