paper

Dust entrainment in photoevaporative winds: Synthetic observations of transition disks

arXiv:2201.12108 · doi:10.1051/0004-6361/202142785

Abstract

X-ray- and extreme-ultraviolet- (XEUV-) driven photoevaporative winds acting on protoplanetary disks around young T-Tauri stars may strongly impact disk evolution, affecting both gas and dust distributions. We compute dust densities for the wind regions of XEUV-irradiated transition disks with gap sizes of 20 and 30 AU, and determine whether they can be observed at wavelengths in scattered and polarised light with current instrumentation. For an XEUV-driven outflow around a T-Tauri star with , we find dust mass-loss rates , and if we invoke vertical settling, the outflow is quite collimated. The synthesised images exhibit a distinct chimney-like structure. The relative intensity of these chimneys is low, but under optimal conditions, their detection may still be feasible with current instrumentation such as JWST NIRCam and SPHERE IRDIS.

Accepted for publication in A&A. 20+10 pages, 17+12 figures (References updated, minor adjustments.)

Dust entrainment in photoevaporative winds: Synthetic observations of transition disks · wovepaper