Protoplanetary disk shadowing by gas infalling onto the young star AK Sco
arXiv:1602.02585 · doi:10.3847/2041-8205/818/1/L17
Abstract
Young solar-type stars grow through the accretion of material from the circumstellar disk during pre-main sequence (PMS) evolution. The ultraviolet radiation generated in this process plays a key role in the chemistry and evolution of young planetary disks. In particular, the hydrogen Lyman-alpha line (Lya) etches the disk surface by driving photoevaporative flows that control disk evolution. Using the Hubble Space Telescope, we have monitored the PMS binary star AK Sco during the periastron passage and have detected a drop of the H2 flux by up to 10% lasting 5.9 hours. We show that the decrease of the H2 flux can be produced by the occultation of the stellar Lya photons by a gas stream in free fall from 3 R*. Given the high optical depth of the Lya line, a very low gas column of NH > 5e17 cm-2 suffices to block the Lya radiation without producing noticeable effects in the rest of the stellar spectral tracers.
ApJ Letters, accepted. January 25th, 2016
References in corpus (6)
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Magnetospheric accretion on the T Tauri star BP Tauri
- Spitzer observations of the Orion OB1 association: disk census in the low mass stars
- Massive planet migration: Theoretical predictions and comparison with observations
- The Origins of Fluorescent H2 Emission From T Tauri~Stars
- The VLTI / PIONIER near-infrared interferometric survey of southern T Tauri stars. I. First results
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- On the feasibility of studying the exospheres of Earth-like exoplanets by Lyman-alpha monitoring. Detectability constraints for nearby M stars
- Accretion and inter-cycle variations in the PMS interacting binary AK Sco
- The EarthASAP mission concept for a Lunar orbiting cubesat