Herschel spectroscopy of Massive Young Stellar Objects in the Magellanic Clouds
J.M. Oliveira (Keele University), J.Th. van Loon, M. Sewilo, M.-Y., Lee, V. Lebouteiller, C.-H.R. Chen, D. Cormier, M.D. Filipovic, L.R. Carlson,, R. Indebetouw, S. Madden, M. Meixner, B. Sargent, Y. Fukui

TL;DR
This study uses Herschel spectroscopy to analyze the gas conditions around massive Young Stellar Objects in the Magellanic Clouds, revealing enhanced photodissociation region emissions and similar CO excitation to Galactic YSOs.
Contribution
First detailed comparison of far-IR line emissions from massive YSOs in the Magellanic Clouds with Galactic counterparts, highlighting environmental effects.
Findings
Enhanced [OI] and [CII] emission in Magellanic YSOs
Higher photoelectric heating efficiency in low metallicity environments
CO excitation similar to Galactic YSOs despite metallicity differences
Abstract
We present Herschel Space Observatory Photodetector Array Camera and Spectrometer (PACS) and Spectral and Photometric Imaging Receiver Fourier Transform Spectrometer (SPIRE FTS) spectroscopy of a sample of twenty massive Young Stellar Objects (YSOs) in the Large and Small Magellanic Clouds (LMC and SMC). We analyse the brightest far infrared (far-IR) emission lines, that diagnose the conditions of the heated gas in the YSO envelope and pinpoint their physical origin.We compare the properties of massive Magellanic and Galactic YSOs.We find that [OI] and [CII] emission, that originates from the photodissociation region associated with the YSOs, is enhanced with respect to the dust continuum in the Magellanic sample. Furthermore the photoelectric heating efficiency is systematically higher for Magellanic YSOs, consistent with reduced grain charge in low metallicity environments. The…
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