Spatially extended PAHs in circumstellar disks around T Tauri and Herbig Ae stars
V.C. Geers (1), E.F. van Dishoeck (1), R. Visser (1), K.M. Pontoppidan, (2), J.-C. Augereau (3), E. Habart (4), A.M. Lagrange (3), ((1) Leiden, Observatory, (2) Caltech, (3) Grenoble Laboratory, (4) IAS)

TL;DR
This study uses large telescopes to detect and spatially resolve PAH emissions in disks around young stars, revealing their distribution and size, and linking them to disk structures such as gaps.
Contribution
First spatially resolved analysis of PAH emission in disks around T Tauri and Herbig Ae stars, connecting PAH extent to disk features and sizes.
Findings
PAH features detected in a small fraction of T Tauri stars.
PAH emission confined within 12-60 AU disks, consistent with large PAH molecules.
PAH emission sizes vary, with some more extended than hot dust, indicating diverse disk environments.
Abstract
Our aim is to determine the presence and location of the emission from polycyclic aromatic hydrocarbons (PAHs) towards low and intermediate mass young stars with disks using large aperture telescopes. VLT-VISIR N-band spectra and VLT-ISAAC and VLT-NACO L-band spectra of 29 sources are presented, spectrally resolving the 3.3, 8.6, 11.2, and 12.6 micron PAH features. Spatial-extent profiles of the features and the continuum emission are derived and used to associate the PAH emission with the disks. The results are discussed in the context of recent PAH-emission disk models. The 3.3, 8.6, and 11.2 micron PAH features are detected toward a small fraction of the T Tauri stars, with typical upper limits between 1E-15 and 5E-17 W/m^2. All 11.2 micron detections from a previous Spitzer survey are confirmed with (tentative) 3.3 micron detections, and both the 8.6 and the 11.2 micron features…
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