Chandra Observation of the Trifid Nebula: X-ray emission from the O star complex and actively forming pre-main sequence stars
arXiv:astro-ph/0401377 · doi:10.1086/383081
Abstract
The Trifid Nebula, a young star-forming HII region, was observed for 16 hours by the Chandra X-ray Observatory. We detected 304 X-ray sources, thirty percent of which are hard sources and seventy percent of of which have near-infrared counterparts. Chandra resolved the HD164492 multiple system into a number of discrete X-ray sources. X-ray emission is detected from components HD164492A (an O7.5III star which ionizes the nebula), B and C (a B6V star), and possibly D (a Be star). HD164492A has a soft spectrum (kT ~ 0.5 keV) while the component C blend shows much harder emission (kT ~ 6 keV). The soft spectrum of the O star is similar to emission seen from other single O stars and is probably produced by shocks within its massive stellar wind. Lack of hard emission suggests that neither a magnetically confined wind shock nor colliding wind emission is important in HD164492A. A dozen stars are found to have flares in the field and most of them are pre-main sequence stars (PMS). Six sources with flares have both optical and 2MASS counterparts. These counterparts are not embedded and thus it is likely that these sources are in a later stage of PMS evolution, possibly Class II or III. Two flare sources did not have any near-IR, optical, or radio counterparts. We suggest these X-ray flare stars are in an early pre-main sequence stage (Class I or earlier). We also detected X-ray sources apparently associated with two massive star forming cores, TC1 and TC4. The spectra of these sources show high extinction and X-ray luminosities of 2 - 5 x 10^{31} erg/s. If these sources are Class 0 objects, it is unclear if their X-ray emission is due to solar-type magnetic activities as in Class I objects, or some other mechanism.
28 pages, 6 figures: Accepted by ApJ
References in corpus (4)
Cited by in corpus (24)
- Overview of the Massive Young Star-Forming Complex Study in Infrared and X-ray (MYStIX) Project
- X-ray Study of Triggered Star Formation and Protostars in IC 1396N
- A Chandra Study of the Rosette Star-Forming Complex. I. The Stellar Population and Structure of the Young Open Cluster NGC 2244
- Molecular clouds in the Trifid nebula M20; Possible evidence for a cloud-cloud collision in triggering the formation of the first generation stars
- Triggered O star formation in M20 via cloud-cloud collision: Comparisons between high-resolution CO observations and simulations
- An X-ray Census of Young Stars in the Massive Southern Star-Forming Complex NGC 6357
- A Multiwavelength Look at Galactic Massive Star Forming Regions
- Gradients of chemical abundances in the Milky Way from HII regions: distances derived from Gaia EDR3 parallaxes and temperature inhomogeneities
- Spectacular Spitzer images of the Trifid Nebula: Protostars in a young, massive-star-forming region
- Discovery of Extremely Embedded X-ray Sources in the R Coronae Australis Star Forming Core
- Variation of the extinction law in the Trifid nebula
- Stellar Clusters in the NGC 6334 Star Forming Complex
- An X-ray Imaging Study of the Stellar Population in RCW49
- A Massive Young Star-Forming Complex Study in Infrared and X-ray: X-ray Sources in Ten Star Forming Regions
- B fields in OB stars (BOB): The discovery of a magnetic field in a multiple system in the Trifid Nebula, one of the youngest star forming regions
- Extraordinarily Hot X-ray Emission from the 09 Emission Line Star HD 119682
- Chasing the Identification of ASCA Galactic Objects (ChIcAGO) - An X-ray Survey of Unidentified Sources in the Galactic Plane I: Source Sample and Initial Results
- Young Stellar Populations in MYStIX Star Forming Regions: Candidate Protostars
- The Effect of Molecular Cloud Properties on the Kinematics of Stars Formed in the Trifid Region
- X-ray Properties of Low-Mass Pre-Main Sequence Stars in the Orion Trapezium Cluster
- SDSS-V LVM: Resolving Physical Conditions in the Trifid Nebula
- Detection of a centrifugal magnetosphere in one of the most massive stars in the Oph star-forming cloud
- Star Forming Regions
- On the nature of V2282 Sgr