Optical Characterization of a New Young Stellar Population in the Serpens Molecular Cloud
arXiv:0810.0829 · doi:10.1088/0004-637X/691/1/672
Abstract
We report on the results of an optical spectroscopic survey designed to confirm the youth and determine the spectral types among a sample of young stellar object (YSO) candidates in the Serpens Molecular Cloud. We observed 150 infrared excess objects, previously discovered by the Spitzer Legacy Program "From Molecular Cores to Planet-Forming Disks" (c2d), bright enough for subsequent Spitzer/IRS spectroscopy. We obtained 78 optical spectra of sufficient S/N for analysis. Extinctions, effective temperatures and luminosities are estimated for this sample, and used to construct H-R diagrams for the population. We identified 20 background giants contaminating the sample, based on their relatively high extinction, position in the H-R diagram, the lack of Halpha emission and relatively low infrared excess. Such strong background contamination (25%) is consistent with the location of Serpens being close to the Galactic plane (5degrees Galactic latitude). The remaining 58 stars (75%) were all confirmed to be young, mostly K and M-type stars that are presumed to belong to the cloud. Individual ages and masses for the YSOs are inferred based on theoretical evolutionary models. The models indicate a spread in stellar ages from 1 to 15 Myr, peaking at 2 - 6 Myr, and a mass distribution of 0.2 to 1.2 Msun with median value around 0.8 Msun. Strong H emission lines (EW[Halpha] > 3 A) have been detected in more than half of the sample (35 stars). The mass accretion rates as derived from the H line widths span a broad distribution over 4 orders of magnitude with median accretion rate of 10^-8 Msun/yr. Our analysis shows that the majority of the infrared excess objects detected in Serpens are actively accreting, young T-Tauri stars.
ApJ in press
References in corpus (10)
- The Stellar Population of the Chamaeleon I Star-Forming Region
- The Spitzer c2d Survey of Large, Nearby, Insterstellar Clouds. IX. The Serpens YSO Population As Observed With IRAC and MIPS
- Cold Disks: Spitzer Spectroscopy of Disks around Young Stars with Large Gaps
- A Spitzer census of the IC 348 nebula
- The Spitzer c2d Survey of Large, Nearby, Interstellar Clouds. XI. Lupus Observed With IRAC and MIPS
- The young population of the Chamaeleon II dark cloud
- The Spitzer c2d Survey of Large, Nearby, Interstellar Clouds.X. The Chamaeleon II Pre-Main Sequence Population as Observed With IRAC and MIPS
- A multi-wavelength census of star formation activity in the young embedded cluster around Serpens/G3-G6
- Remarks on Rapid vs. Slow Star Formation
- Spitzer/IRAC Observations of AGB stars
Cited by in corpus (64)
- The Spitzer c2d Legacy Results: Star Formation Rates and Efficiencies; Evolution and Lifetimes
- X-Shooter spectroscopy of young stellar objects in Lupus: Accretion properties of class II and transitional objects
- The Spatial Distribution of Star Formation in the Solar Neighbourhood: Do all stars form in clusters?
- Young Stellar Objects in the Gould Belt
- The Taurus Spitzer Survey: New Candidate Taurus Members Selected Using Sensitive Mid-Infrared Photometry
- Protoplanetary disk lifetimes vs stellar mass and possible implications for giant planet populations
- Star Formation Relations in Nearby Molecular Clouds
- Disk evolution in the solar neighborhood. I Disk frequencies from 1 to 100 Myr
- Dynamically Driven Evolution of the Interstellar Medium in M51
- The Nature of Transition Circumstellar Disks I. The Ophiuchus Molecular Cloud
- A Spitzer c2d Legacy Survey to Identify and Characterize Disks with Inner Dust Holes
- An all-sky Support Vector Machine selection of WISE YSO Candidates
- The Gould's Belt Distances Survey (GOBELINS) III. The distance to the Serpens/Aquila Molecular Complex
- VLT-CRIRES Survey of Rovibrational CO Emission from Protoplanetary Disks
- The Super-linear Slope of the Spatially-Resolved Star Formation Law in NGC 3521 and NGC 5194 (M51a)
- C2D Spitzer-IRS spectra of disks around T Tauri stars. IV. Crystalline silicates
- The Luminosities of Protostars in the Spitzer c2d and Gould Belt Legacy Clouds
- Identification of Young Stellar Object candidates in the DR2 x AllWISE catalogue with machine learning methods
- The Nature of Transition Circumstellar Disks III. Perseus, Taurus, and Auriga
- The (w)hole survey: an unbiased sample study of transition disk candidates based on Spitzer catalogs
- Bridging the gap between protoplanetary and debris disks: separate evolution of millimeter and micrometer-sized dust
- Spectroscopy of new brown dwarf members of rho Ophiuchi and an updated initial mass function
- Disc Clearing of Young Stellar Objects: Evidence for Fast Inside-out Dispersal
- The Spitzer survey of interstellar clouds in the Gould Belt. II. The Cepheus Flare observed with IRAC and MIPS
- Deep wide-field near-infrared survey of the Carina Nebula
- Near-Infrared properties of the X-ray emitting young stellar objects in the Carina Nebula
- A Spitzer Survey of Protoplanetary Disk Dust in the Young Serpens Cloud: How do Dust Characteristics Evolve with Time?
- Impact of grain evolution on the chemical structure of protoplanetary disks
- Star-forming content of the giant molecular filaments in the Milky Way
- On the Evolution of Dust Mineralogy, From Protoplanetary Disks to Planetary Systems
- Disks and Outflows in CO Rovibrational Emission from Embedded, Low-Mass Young Stellar Objects
- The North American and Pelican Nebulae II. MIPS Observations and Analysis
- Grain growth across protoplanetary discs: 10-micron silicate feature versus millimetre slope
- NGC 1980 is not a foreground population of Orion: Spectroscopic survey of young stars with low extinction in Orion A
- Lack of PAH emission toward low-mass embedded young stellar objects
- The Spitzer c2d Survey of Large, Nearby, Interstellar Clouds. XII. The Perseus YSO Population as Observed with IRAC and MIPS
- POISSON project - III - Investigating the evolution of the mass accretion rate
- Transition disks: the observational revolution from SEDs to imaging
- Discovering young stars in the Gum 31 region with infrared observations
- Populations of Young Stellar Objects in Nearby Molecular Clouds
- The Spitzer Survey of Interstellar Clouds in the Gould Belt. VI. The Auriga-California Molecular Cloud observed with IRAC and MIPS
- Extension of HOPS Out to 500 ParSecs (eHOPS). I. Identification and Modeling of Protostars in the Aquila Molecular Clouds
- The Spitzer Survey of Interstellar Clouds in the Gould Belt. V. Ophiuchus North Observed with IRAC and MIPS
- The VISTA Orion mini-survey: star formation in the Lynds 1630 North cloud
- Gaia DR2 view of the Lupus V-VI clouds: the candidate diskless young stellar objects are mainly background contaminants
- The Spitzer Survey of Interstellar Clouds in the Gould Belt. IV. Lupus V and VI Observed with IRAC and MIPS
- The VISTA Carina Nebula Survey II. Spatial distribution of the infrared-excess-selected young stellar population
- FLAMINGOS Near Infra-Red Survey of The Serpens Cloud Main Core
- New Insights into Time Series Analysis II -- No Correlated Observations
- New Insights into Time Series Analysis - I - Correlated observations
- The dependence of stellar age distributions on GMC environment
- Searching for planetary-mass T-dwarfs in the core of Serpens
- Distances to nearby molecular clouds traced by young stars
- The Physical Structure of Protoplanetary Disks: the Serpens Cluster Compared with Other Regions
- The Spitzer-IRAC Point Source Catalog of the Vela-D Cloud
- An SMA Continuum Survey of Circumstellar Disks in the Serpens Star-Forming Region
- On the lifetime of discs around late type stars
- A deep optical/near-infrared catalog of Serpens
- Discovery of 22 GHz Water Masers in the Serpens South Region
- Probabilistic Classification of Infrared-selected targets for SPHEREx mission: In search of YSOs
- New X-ray Selected Pre-Main Sequence Members of the Serpens Molecular Cloud
- LAMOST YSOs. I. Spectroscopically identifying and characterizing M-type young stellar objects
- The enhanced YSO population in Serpens
- Measuring Dust Masses of Protoplanetary Disks in Serpens and L1641/L1647 with ALMA