A VLT/NACO Study of Star Formation in the Massive Embedded Cluster RCW 38
K.L. DeRose, T.L. Bourke, R.A. Gutermuth, S.J. Wolk, S.T. Megeath, J., Alves, D. Nuernberger

TL;DR
This study uses adaptive optics near-infrared imaging to analyze the star formation, cluster structure, and protostellar activity in the embedded RCW 38 cluster, revealing its stellar content, binary systems, and signs of ongoing star formation.
Contribution
It provides detailed near-infrared observations of RCW 38, identifying young stars, protostars, and cluster structure, and compares the excess fraction with Orion, offering new insights into star formation in massive embedded clusters.
Findings
Most detected stars are cluster members with minimal contamination.
Identified five deeply embedded protostars and 29% of stars with Ks-band excess.
RCW 38 IRS2 is a massive star binary with a 500 AU separation.
Abstract
We present adaptive optics (AO) near-infrared (JHKs) observations of the deeply embedded massive cluster RCW 38 using NACO on the VLT. Narrowband AO observations centered at wavelengths of 1.28, 2.12, and 2.17 micron were also obtained. The area covered by these observations is about 0.5 pc square, centered on the O star RCW 38 IRS2. We use the JHKs colors to identify young stars with infrared excess. Through a detailed comparison to a nearby control field, we find that most of the 337 stars detected in all three infrared bands are cluster members (~317), with essentially no contamination due to background or foreground sources. Five sources have colors suggestive of deeply embedded protostars, while 53 sources are detected at Ks only; their spatial distribution with respect to the extinction suggests they are highly reddened cluster members. Detectable Ks-band excess is found toward 29…
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