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An X-ray Imaging Study of the Stellar Population in RCW49

Authors :
Tsujimoto, M.
Feigelson, E. D.
Townsley, L. K.
Broos, P. S.
Getman, K. V.
Wang, J.
Garmire, G. P.
Baba, D.
Nagayama, T.
Tamura, M.
Churchwell, E. B.
Tsujimoto, M.
Feigelson, E. D.
Townsley, L. K.
Broos, P. S.
Getman, K. V.
Wang, J.
Garmire, G. P.
Baba, D.
Nagayama, T.
Tamura, M.
Churchwell, E. B.
Publication Year :
2007

Abstract

We present the results of a high-resolution X-ray imaging study of the stellar population in the Galactic massive star-forming region RCW49 and its central OB association Westerlund 2. We obtained a 40 ks X-ray image of a 17'x17' field using the Chandra X-ray Observatory and deep NIR images using the Infrared Survey Facility in a concentric 8'3x8'3 region. We detected 468 X-ray sources and identified optical, NIR, and Spitzer Space Telescope MIR counterparts for 379 of them. The unprecedented spatial resolution and sensitivity of the X-ray image, enhanced by optical and infrared imaging data, yielded the following results: (1) The central OB association Westerlund 2 is resolved for the first time in the X-ray band. X-ray emission is detected from all spectroscopically-identified early-type stars in this region. (2) Most (86%) X-ray sources with optical or infrared identifications are cluster members in comparison with a control field in the Galactic Plane. (3) A loose constraint (2--5 kpc) for the distance to RCW49 is derived from the mean X-ray luminosity of T Tauri stars. (4) The cluster X-ray population consists of low-mass pre--main-sequence and early-type stars as obtained from X-ray and NIR photometry. About 30 new OB star candidates are identified. (5) We estimate a cluster radius of 6'--7' based on the X-ray surface number density profiles. (6) A large fraction (90%) of cluster members are identified individually using complimentary X-ray and MIR excess emission. (7) The brightest five X-ray sources, two Wolf-Rayet stars and three O stars, have hard thermal spectra.<br />Comment: 19 pages, 17 figures, 4 tables. ApJ in press

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363340236
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1086.519681