Gas trapping of hot dust around main-sequence stars
arXiv:2008.07505 · doi:10.1093/mnras/staa2514
Abstract
In 2006 Vega was discovered to display excess near-infrared emission. Surveys now detect this phenomenon for one fifth of main-sequence stars, across various spectral types and ages. The excesses are interpreted as populations of small, hot dust grains very close to their stars, which must originate from comets or asteroids. However, the presence of such grains in copious amounts is mysterious, since they should rapidly sublimate or be blown out of the system. Here we investigate a potential mechanism to generate excesses: dust migrating inwards under radiation forces sublimates near the star, releasing modest quantities of gas which then traps subsequent grains. This mechanism requires neither specialised system architectures nor high dust supply rates, and could operate across diverse stellar types and ages. The model naturally reproduces many features of inferred dust populations, in particular their location, preference for small grains, steep size distribution, and dust location scaling with stellar luminosity. For Sun-like stars the mechanism can produce 2.2 micron excesses that are an order of magnitude larger than those at 8.5 micron, as required by observations. However, for A-type stars the simulated near-infrared excesses were only twice those in the mid infrared; grains would have to be 5-10 times smaller than those trapped in our model to be able to explain observed near-infrared excesses around A stars. Further progress with any hot dust explanation for A stars requires a means for grains to become very hot without either rapidly sublimating or being blown out of the system.
19 pages, 9 figures. Accepted for publication in MNRAS
References in corpus (20)
- Transience of hot dust around sun-like stars
- Circumstellar material in the Vega inner system revealed by CHARA/FLUOR
- Accretion and destruction of planetesimals in turbulent disks
- A near-infrared interferometric survey of debris-disc stars. IV. An unbiased sample of 92 southern stars observed in H-band with VLTI/PIONIER
- Planetesimal driven migration as an explanation for observations of high levels of warm, exozodiacal dust
- Gas and dust in the Beta Pictoris Moving Group as seen by the Herschel Space Observatory
- A near-infrared interferometric survey of debris disk stars. I. Probing the hot dust content around epsilon Eridani and tau Ceti with CHARA/FLUOR
- Co-Accretion of Chondrules and Dust in the Solar Nebula
- A near-infrared interferometric survey of debris-disc stars. V. PIONIER search for variability
- Vega's hot dust from icy planetesimals scattered inward by an outward-migrating planetary system
- Population synthesis of exocometary gas around A stars
- Inner mean-motion resonances with eccentric planets: A possible origin for exozodiacal dust clouds
- Near-infrared emission from sublimating dust in collisionally active debris disks
- Porous dust grains in debris disks
- Hot circumstellar material resolved around beta Pic with VLTI/PIONIER
- Constraints on the structure of hot exozodiacal dust belts
- Dust size and spatial distributions in debris discs: predictions for exozodiacal dust dragged in from an exo-Kuiper belt
- Hot exozodiacal dust: an exocometary origin?
- The influence of dust grain porosity on the analysis of debris disc observations
- A near-infrared interferometric survey of debris-disk stars. VI. Extending the exozodiacal light survey with CHARA/JouFLU
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- Hot exozodis: cometary supply without trapping is unlikely to be the mechanism
- First L band detection of hot exozodiacal dust with VLTI/MATISSE
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