Lack of PAH emission toward low-mass embedded young stellar objects
V. C. Geers, E. F. van Dishoeck, K. M. Pontoppidan, F. Lahuis, A., Crapsi, C. P. Dullemond, G. A. Blake

TL;DR
This study conducts a sensitive mid-infrared spectroscopic survey of low-mass embedded young stellar objects to investigate the presence and abundance of PAHs, finding they are largely absent in these early star formation stages.
Contribution
It provides the first comprehensive survey of PAH features in embedded YSOs and models the factors affecting their detectability, revealing a significant PAH deficiency compared to more evolved stars.
Findings
PAH features are detected in less than 2% of embedded YSOs.
Most PAHs are likely frozen in icy dust layers or coagulated, explaining their absence.
PAH abundance in embedded phases is at least an order of magnitude lower than in molecular clouds.
Abstract
PAHs have been detected toward molecular clouds and some young stars with disks, but have not yet been associated with embedded young stars. We present a sensitive mid-IR spectroscopic survey of PAH features toward a sample of low-mass embedded YSOs. The aim is to put constraints on the PAH abundance in the embedded phase of star formation using radiative transfer modeling. VLT-ISAAC L-band spectra for 39 sources and Spitzer IRS spectra for 53 sources are presented. Line intensities are compared to recent surveys of Herbig Ae/Be and T Tauri stars. The radiative transfer codes RADMC and RADICAL are used to model the PAH emission from embedded YSOs consisting of a PMS star with a circumstellar disk embedded in an envelope. The dependence of the PAH feature on PAH abundance, stellar radiation field, inclination and the extinction by the surrounding envelope is studied. The 3.3 micron…
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