Spitzer IRAC and MIPS Imaging of Clusters and Outflows in 9 High-mass Star Forming Regions
Keping Qiu, Qizhou Zhang, S. Thomas Megeath, Robert A. Gutermuth,, Henrik Beuther, Debra S. Shepherd, T. K. Sridharan, L. Testi, and C. G. De, Pree

TL;DR
This study uses Spitzer IRAC and MIPS imaging to identify young stellar objects and outflows in nine high-mass star-forming regions, revealing new structures and potential evolutionary trends in massive star formation.
Contribution
First comprehensive IRAC and MIPS imaging survey of nine high-mass star-forming regions, identifying new outflow structures and analyzing their morphologies and evolution.
Findings
Detected parsec-sized clusters with about 20 YSOs in seven regions.
Revealed at least twelve outflows, with diverse morphologies.
Discovered new outflow structures compared to previous observations.
Abstract
We present Spitzer Space Telescope IRAC and MIPS observations toward a sample of nine high-mass star forming regions at a distance of around 2 kpc. Based on IRAC and MIPS 24 m photometric results and 2MASS JHKs data, we carry out a census of young stellar objects (YSOs) in a 5' by 5' field toward each region. Toward seven out of the nine regions, we detect parsec sized clusters with around 20 YSOs surrounded by a more extended and sparse distribution of young stars and protostars. For the other two regions, IRAS 20126+4104 and IRAS 22172+5549, the former has the lowest number of YSOs in the sample and shows no obvious cluster, and the latter appears to be part of a larger, potentially more evolved cluster. The deep IRAC imaging reveals at least twelve outflows in eight out of the nine regions, with nine outflows prominent in the 4.5 m band most probably attributed to shocked…
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