The Spatial Structure of Young Stellar Clusters. II. Total Young Stellar Populations
Michael A. Kuhn (1,2,3), Konstantin V. Getman (1), Eric D. Feigelson, (1) ((1) Penn State University, (2) Universidad de Valpara\'iso, (3), Millennium Institute of Astrophysics)

TL;DR
This study estimates the total young stellar populations in 17 massive star-forming regions, revealing diverse density structures and challenging the idea of a universal density threshold for star formation.
Contribution
It provides corrected, detailed maps of stellar densities in multiple regions, using combined X-ray and infrared data to improve population estimates over previous surveys.
Findings
Dense stellar clumps similar to Orion Nebula Cluster are common.
No universal surface-density threshold distinguishes clustered from distributed star formation.
Large populations reside in dense environments of 200-10,000 stars/pc^2.
Abstract
We investigate the intrinsic stellar populations (estimated total numbers of OB and pre-main-sequence stars down to 0.1 Mo) that are present in 17 massive star-forming regions (MSFRs) surveyed by the MYStIX project. The study is based on the catalog of >31,000 MYStIX Probable Complex Members with both disk-bearing and disk-free populations, compensating for extinction, nebulosity, and crowding effects. Correction for observational sensitivities is made using the X-ray Luminosity Function (XLF) and the near-infrared Initial Mass Function (IMF)--a correction that is often not made by infrared surveys of young stars. The resulting maps of the projected structure of the young stellar populations, in units of intrinsic stellar surface density, allow direct comparison between different regions. Several regions have multiple dense clumps, similar in size and density to the Orion Nebula…
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