The Darkest Shadows: Deep Mid-Infrared Extinction Mapping of a Massive Protocluster
arXiv:1401.6855 · doi:10.1088/2041-8205/782/2/L30
Abstract
We use deep Spitzer-IRAC imaging of a massive Infrared Dark Cloud (IRDC) G028.37+00.07 to construct a Mid-Infrared (MIR) extinction map that probes mass surface densities up to (mag), amongst the highest values yet probed by extinction mapping. Merging with a NIR extinction map of the region, creates a high dynamic range map that reveals structures down to mag. We utilize the map to: (1) Measure a cloud mass within a radius of pc. CO kinematics indicate that the cloud is gravitationally bound. It thus has the potential to form one of the most massive young star clusters known in the Galaxy. (2) Characterize the structures of 16 massive cores within the IRDC, finding they can be fit by singular polytropic spheres with and . They have --- relatively low values that, along with their measured cold temperatures, suggest magnetic fields, rather than accretion-powered radiative heating, are important for controlling fragmentation of these cores. (3) Determine the (equivalently column density or ) probability distribution function (PDF) for a region that is near complete for mag. The PDF is well fit by a single log-normal with mean mag, high compared to other known clouds. It does not exhibit a separate high-end power law tail, which has been claimed to indicate the importance of self-gravity. However, we suggest that the PDF does result from a self-similar, self-gravitating hierarchy of structure being present over a wide range of scales in the cloud.
6 pages, 3 figures, 1 table, accepted to ApJL
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