Deuteration as an evolutionary tracer in massive-star formation
arXiv:1103.5636 · doi:10.1051/0004-6361/201116631
Abstract
Theory predicts, and observations confirm, that the column density ratio of a molecule containing D to its counterpart containing H can be used as an evolutionary tracer in the low-mass star formation process. Since it remains unclear if the high-mass star formation process is a scaled-up version of the low-mass one, we investigated whether the relation between deuteration and evolution can be applied to the high-mass regime. With the IRAM-30m telescope, we observed rotational transitions of N2D+ and N2H+ and derived the deuterated fraction in 27 cores within massive star-forming regions understood to represent different evolutionary stages of the massive-star formation process. Results. Our results clearly indicate that the abundance of N2D+ is higher at the pre-stellar/cluster stage, then drops during the formation of the protostellar object(s) as in the low-mass regime, remaining relatively constant during the ultra-compact HII region phase. The objects with the highest fractional abundance of N2D+ are starless cores with properties very similar to typical pre-stellar cores of lower mass. The abundance of N2D+ is lower in objects with higher gas temperatures as in the low-mass case but does not seem to depend on gas turbulence. Our results indicate that the N2D+-to-N2H+ column density ratio can be used as an evolutionary indicator in both low- and high-mass star formation, and that the physical conditions influencing the abundance of deuterated species likely evolve similarly during the processes that lead to the formation of both low- and high-mass stars.
Accepted by A&AL, 4 pages, 2 figures, 2 appendices (one for Tables, one for additional figures)
References in corpus (13)
- Survey of ortho-H2D+(1_{1,0}-1_{1,1}) in dense cloud cores
- Depletion and low gas temperature in the L183 prestellar core : the N2H+ - N2D+ tool
- The N2D+/N2H+ ratio as an evolutionary tracer of Class 0 protostars
- The early stages of star formation in Infrared Dark Clouds: characterizing the core dust properties
- Searching for massive pre--stellar cores through observations of N2H+ and N2D+
- Probing the initial conditions of High Mass Star formation -- I. Deuteration and depletion in high mass pre/protocluster clumps
- Interferometric multi-wavelength (sub)millimeter continuum study of the young high-mass protocluster IRAS05358+3543
- The NH2D/NH3 ratio toward pre-protostellar cores around the UCHII region in IRAS 20293+3952
- N2H+ depletion in the massive protostellar cluster AFGL 5142
- Star formation in a clustered environment around the UCHII region in IRAS 20293+3952
- Survey of intermediate/high-mass star-forming regions at centimeter and millimeter wavelengths
- Deuterium Fractionation as an Evolutionary Probe in the Infrared Dark Cloud G28.34+0.06
- The Initial Conditions of Clustered Star Formation III. The Deuterium Fractionation of the Ophiuchus B2 Core
Cited by in corpus (96)
- High-Mass Star and Massive Cluster Formation in the Milky Way
- Chemistry in Infrared Dark Cloud Clumps: a Molecular Line Survey at 3 mm
- Fragmentation of Molecular Clumps and Formation of Protocluster
- Mid-Infrared Extinction Mapping of Infrared Dark Clouds II. The Structure of Massive Starless Cores and Clumps
- The Dynamics of Massive Starless Cores with ALMA
- Gravity or turbulence? -III. Evidence of pure thermal Jeans fragmentation at ~0.1 pc scale
- Complex, Quiescent Kinematics in a Highly Filamentary Infrared Dark Cloud
- Photodissociation of interstellar N2
- Distinct Chemical Regions in the "Prestellar" Infrared Dark Cloud (IRDC) G028.23-00.19
- The Deuterium Fractionation Timescale in Dense Cloud Cores: A Parameter Space Exploration
- Deuteration and evolution in the massive star formation process: the role of surface chemistry
- Evolutionary study of complex organic molecules in high-mass star-forming regions
- High CO depletion in southern infrared-dark clouds
- Gas Kinematics and Excitation in the Filamentary IRDC G035.39-00.33
- The Detection of Hot Cores and Complex Organic Molecules in the Large Magellanic Cloud
- Properties of dense cores in clustered massive star-forming regions at high angular resolution
- Chemical evolution in the early phases of massive star formation II: Deuteration
- The Deuterium Fraction in Massive Starless Cores and Dynamical Implications
- Phosphorus-bearing molecules in massive dense cores
- Radiation Transfer of Models of Massive Star Formation. III. The Evolutionary Sequence
- Nitrogen and hydrogen fractionation in high-mass star forming cores from observations of HCN and HNC
- Massive and low-mass protostars in massive "starless" cores
- Initial phases of massive star formation in high infrared extinction clouds. II. Infall and onset of star formation
- DNC/HNC Ratio of Massive Clumps in Early Evolutionary Stages of High-Mass Star Formation
- On the origin of phosphorus nitride in star-forming regions
- Deuterium fractionation and the degree of ionisation in massive clumps within infrared dark clouds
- Observations of 6.7 GHz Methanol Masers with EAVN I: VLBI Images of the first Epoch of Observations
- Outflow detection in a 70 m dark high-mass core
- First measurements of 15N fractionation in N2H+ toward high-mass star forming cores
- DNC/HNC and N2D+/N2H+ ratios in high-mass star forming cores
- Origin of the PN molecule in star-forming regions: the enlarged sample
- A combined IRAM and Herschel/HIFI study of cyano(di)acetylene in Orion KL: tentative detection of DC3N
- A (sub)millimetre study of dense cores in Orion B9
- Deuteration around the ultracompact HII region Mon R2
- Survey of ortho-HD in high-mass star-forming regions
- Widespread deuteration across the IRDC G035.39-00.33
- Zooming in to Massive Star Birth
- A new proxy to estimate the cosmic-ray ionisation rate in dense cores
- Deuterium Fractionation as an Evolutionary Probe in Massive Proto-stellar/cluster Cores
- Identification of prestellar cores in high-mass star forming clumps via observations with ALMA
- H2D+ in the high mass star-forming Region Cygnus-X
- A study of the -/- ratio in low-mass star forming regions
- Deuterium Fractionation in the Ophiuchus Molecular Cloud
- Sulphur-rich cold gas around the hot core precursor G328.2551-0.5321. An APEX unbiased spectral survey of the 2 mm, 1.2 mm, and 0.8 mm atmospheric windows
- Molecular Cloud Cores with High Deuterium Fraction: Nobeyama Single-Pointing Survey
- Deuterium fractionation and H2D+ evolution in turbulent and magnetized cloud cores
- An analysis of the deuterium fractionation of star-forming cores in the Perseus molecular cloud
- Deuterium fractionation as a multi-phase component tracer in the Galactic Centre
- The chemical structure of young high-mass star-forming clumps: (I) Deuteration
- A timeline for massive star-forming regions via combined observation of o-HD and ND
- Complex Organic Molecules in Star-Forming Regions of the Magellanic Clouds
- Similar complex kinematics within two massive, filamentary infrared dark clouds
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VI. A sulphur journey across star-forming regions: study of thioformaldehyde emission
- ATLASGAL -- selected massive clumps in the inner Galaxy. IX. Deuteration of ammonia
- The CO-H2 van der Waals complex and complex organic molecules in cold molecular clouds: a TMC-1C survey
- Fast deuterium fractionation in magnetized and turbulent filaments
- Protonated CO2 in massive star-forming clumps
- Mid-J CO shock tracing observations of infrared dark clouds II Low-J CO constraints on excitation, depletion, and kinematics
- H ortho-to-para conversion on grains: A route to fast deuterium fractionation in dense cloud cores?
- Transport of Protostellar Cosmic Rays in Turbulent Dense Cores
- Deuterium and N fractionation in NH during the formation of a Sun-like star
- The evolutionary status of dense cores in the NGC 1333 IRAS 4 region
- First survey of HCNH in high-mass star-forming cloud cores
- DCN observations towards high-mass star-forming regions
- Mid-J CO Shock Tracing Observations of Infrared Dark Clouds I
- Molecular Cloud Cores with High Deuterium Fractions: Nobeyama Mapping Survey
- Fragmentation of the High-mass "Starless'' Core G10.21-0.31: a Coherent Evolutionary Picture for Star Formation
- The TOPGöt high-mass star-forming sample. I. Methyl cyanide emission as tracer of early phases of star formation
- Deuterated methyl mercaptan (CHSD): Laboratory rotational spectroscopy and search toward IRAS 16293-2422 B
- Variations of the HCO, HCN, HNC, NH and NH deuterium fractionation in high-mass star-forming regions
- Gas vs. solid phase deuterated chemistry: HDCO and DCO in massive star-forming regions
- Probing the initial conditions of high-mass star formation -- IV. Gas dynamics and NHD chemistry in high-mass precluster and protocluster clumps
- Structure, Dynamics and Deuterium Fractionation of Massive Pre-Stellar Cores
- MALT90 molecular content on high-mass IR-dark clumps
- Spokes cluster: The search for the quiescent gas
- Deuterium Fractionation across the Infrared Dark Cloud G034.77-00.55 interacting with the Supernova Remnant W44
- Rotational spectroscopy of CHOD with a reanalysis of CHOD toward IRAS 162932422
- Deuteration in infrared dark clouds
- Star Formation in a Strongly Magnetized Cloud
- Ongoing star formation in the proto-cluster IRAS 22134+5834
- Analysis of Low Excitation HDO Transitions Toward the High-Mass Star-forming Regions G34.26+0.15, W51e/e, and W49N
- Interaction between the Supernova Remnant W44 and the Infrared Dark Cloud G034.77-00.55: shock induced star formation?
- Molecular deuterations in massive Starless Clump Candidates
- Vibrational, non-adiabatic and isotopic effects in the dynamics of the H + H H + H reaction: application to plasma modeling
- DCO and DCN 1-0 survey toward a sample of Planck cold clumps
- First detection of deuterated methylidyne (CD) in the interstellar medium
- The LMT 2 millimeter receiver system (B4R). II. Science demonstration observations toward Orion-KL/OMC-1
- Chemical complexity in star formation induced by stellar feedback: cores shock-formed by the supernova remnant W44
- CHemical Evolution in MassIve star-forming COres (CHEMICO). I. Evolution of the temperature structure
- Synthetic observations using POLARIS: an application to simulations of massive prestellar cores
- Chemistry of Dark Molecular Clouds
- First detection of a deuterated molecule in a starburst environment within NGC 253
- The Cygnus Allscale Survey of Chemistry and Dynamical Environments: CASCADE III. The large scale distribution of DCO+, DNC and DCN in the DR21 filament
- CO Depletion in Infrared Dark Clouds
- ALMAGAL VIII. Early phases of triggered star formation in source AG286.07161.8229
- Singly- and doubly-deuterated formaldehyde in massive star-forming regions