The Properties of X-ray Luminous Young Stellar Objects in the NGC 1333 and Serpens Embedded Clusters
E. Winston, S.T. Megeath, S. Wolk, B. Spitzbart, R. Gutermuth, L.E., Allen, J. Hernandez, K. Covey, J. Muzerolle, J.L. Hora, P.C. Myers, G.G., Fazio

TL;DR
This study analyzes X-ray data from the NGC 1333 and Serpens embedded clusters, revealing their stellar properties, X-ray luminosity relations, and estimating the Serpens cluster distance, contributing to understanding young stellar objects in these regions.
Contribution
It provides a detailed comparison of X-ray properties of two nearby embedded clusters and introduces a new distance estimate for the Serpens cluster based on X-ray data.
Findings
X-ray luminosity depends on stellar surface area.
Serpens cluster distance estimated at 360+22/-13 pc.
Class III sources show higher X-ray luminosity for a given surface area.
Abstract
We present Chandra X-ray data of the NGC 1333 embedded cluster, combining these data with existing Chandra data, Sptizer photometry and ground based spectroscopy of both the NGC 1333 & Serpens North clusters to perform a detailed study of the X-ray properties of two of the nearest embedded clusters to the Sun. In NGC 1333, a total of 95 cluster members are detected in X-rays, of which 54 were previously identified with Spitzer. Of the Spitzer sources, we detect 23% of the Class I protostars, 53% of the Flat Spectrum sources, 52% of the Class II, and 50% of the Transition Disk YSOs. Forty-one Class III members of the cluster are identified, bringing the total identified YSO population to 178. The X-ray Luminosity Functions (XLFs) of the NGC 1333 and Serpens clusters are compared to each other and the Orion Nebula Cluster. Based on this comparison, we obtain a new distance for the Serpens…
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