Near-infrared spectroscopic observations of massive young stellar object candidates in the Central Molecular Zone
arXiv:1711.04553 · doi:10.1051/0004-6361/201731918
Abstract
We present a spectroscopic follow-up of photometrically-selected young stellar object (YSO) candidates in the Central Molecular Zone of the Galactic center. Our goal is to quantify the contamination of this YSO sample by reddened giant stars with circumstellar envelopes and to determine the star formation rate in the CMZ. We obtained KMOS low-resolution near-infrared spectra (R ~4000) between 2.0 and 2.5 um of sources, many of them previously identified, by mid-infrared photometric criteria, as massive YSOs in the Galactic center. Our final sample consists of 91 stars with good signal-to-noise ratio. We separate YSOs from cool late-type stars based on spectral features of CO and Br_gamma at 2.3 um and 2.16 um respectively. We make use of SED model fits to the observed photometric data points from 1.25 to 24 um in order to estimate approximate masses for the YSOs. Using the spectroscopically identified YSOs in our sample, we confirm that existing colour-colour diagrams and colour-magnitude diagrams are unable to efficiently separate YSOs and cool late-type stars. In addition, we define a new colour-colour criterion that separates YSOs from cool late-type stars in the H-Ks vs H-[8.0] diagram. We use this new criterion to identify YSO candidates in the |l| < 1.5, |b|<0.5 degree region and use model SED fits to estimate their approximate masses. By assuming an appropriate initial mass function (IMF) and extrapolating the stellar IMF down to lower masses, we determine a star formation rate (SFR) of ~0.046 +/- 0.026 Msun/yr assuming an average age of 0.75 +/- 0.25 Myr for the YSOs. This value is lower than estimates found using the YSO counting method in the literature. Our SFR estimate in the CMZ agrees with the previous estimates from different methods and reaffirms that star formation in the CMZ is proceeding at a lower rate than predicted by various star forming models.
12 pages, 10 figures, accepted for publication in A&A
References in corpus (16)
- An Update on Monitoring Stellar Orbits in the Galactic Center
- An Improved Distance and Mass Estimate for Sgr A* from a Multistar Orbit Analysis
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- Molecular gas kinematics within the central 250 pc of the Milky Way
- Star Formation in the Central 400 pc of the Milky Way: Evidence for a Population of Massive YSOs
- Star formation rates and efficiencies in the Galactic Centre
- A 24 Micron Point Source Catalog of the Galactic Plane from Spitzer/MIPSGAL
- A modular set of synthetic spectral energy distributions for young stellar objects
- VLT K-band spectroscopy of massive young stellar objects in (ultra-)compact HII regions
- KMOS view of the Galactic Centre I. Young stars are centrally concentrated
- Point Sources from a Spitzer IRAC Survey of the Galactic Center
- Main-sequence stars masquerading as Young Stellar Objects in the central molecular zone
- Mapping the Outer Edge of the Young Stellar Cluster in the Galactic Center
- Interstellar Extinction and Long-Period Variables in the Galactic Center
- Origins of Scatter in the Relationship Between HCN 1-0 and Dense Gas Mass in the Galactic Center
- The FluxCompensator: Making Radiative Transfer Models of hydrodynamical Simulations Directly Comparable to Real Observations
Cited by in corpus (9)
- A KMOS survey of the nuclear disk of the Milky Way I: Survey design and metallicities
- The extinction law in the inner deg of the Milky Way and the red clump absolute magnitude in the inner bar-bulge
- A global view on star formation: The GLOSTAR Galactic plane survey IV. Radio continuum detections of young stellar objects in the Galactic Centre region
- Stellar Populations in the Transition Region of Nuclear Star Cluster and Nuclear Stellar Disc
- Radio observations of massive stars in the Galactic centre: The Arches Cluster
- Near-infrared spectroscopy of the massive stellar population of W51: evidence for multi-seeded star formation
- Massive Young Stellar Objects in the Galactic Center. II. Seeing Through the Ice-rich Envelopes
- Detecting hot stars in the Galactic centre with combined near- and mid-infrared photometry
- A framework for modeling the evolution of young stellar objects