High NH2D/NH3 ratios in protostellar cores
arXiv:astro-ph/0302564 · doi:10.1051/0004-6361:20030297
Abstract
Observations of low mass protostars which probe small enough size scales to be within likely CO depletion regions show the highest [NH2D]/[NH3] ratios yet measured, of 4--33%. These molecular D/H ratios are higher than those measured on larger scales, showing that deuterium fractionation increases towards protostellar cores. As in cold clouds, such high ratios can be produced by gas-phase ion-molecule chemistry in the presence of depletion. Grain surface chemistry is less likely to explain the deuterium enhancement, as it would require higher fractionation in ices than current models predict. The link between accretion, depletion and high molecular deuterium fractionation is strongly supported.
4 pages 1 figure
References in corpus (4)
Cited by in corpus (23)
- Survey of ortho-H2D+(1_{1,0}-1_{1,1}) in dense cloud cores
- The N2D+/N2H+ ratio as an evolutionary tracer of Class 0 protostars
- Interstellar deuterated ammonia: From NH3 to ND3
- Molecular Outflows Driven by Low-Mass Protostars. I. Correcting for Underestimates When Measuring Outflow Masses and Dynamical Properties
- New extended deuterium fractionation model: assessment at dense ISM conditions and sensitivity analysis
- 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
- Deuterium Fractionation as an Evolutionary Probe in Massive Proto-stellar/cluster Cores
- Collisional excitation of singly deuterated ammonia NHD by H
- Deuterium enrichment of ammonia produced by surface N+H/D addition reactions at low temperature
- Evolution of Morphological and Physical Properties of Laboratory Interstellar Organic Residues with Ultraviolet Irradiation
- A Centimeter-wave Study of Methanol and Ammonia Isotopologues in Sgr B2(N): Physical and chemical differentiation between two hot cores
- ATLASGAL -- selected massive clumps in the inner Galaxy. IX. Deuteration of ammonia
- Deuterated ammonia in Galactic massive star-forming regions
- Properties of the Molecular Cores of Low Luminosity Objects
- The Influence of Deuteration and Turbulent Diffusion on the Observed D/H Ratio
- First sample of nitrogen isotopic ratio measurements in low-mass protostars
- Probing the initial conditions of high-mass star formation -- IV. Gas dynamics and NHD chemistry in high-mass precluster and protocluster clumps
- A Survey of Deuterated Ammonia in the Cepheus Star-Forming Region L1251
- The first interferometric measurements of NHD/NH ratio in hot corinos
- Very Large Array Ammonia Observations of the HH 111/HH 121 Protostellar System: a Detection of a New Source With a Peculiar Chemistry
- Spatial distribution of NH2D in massive star-forming regions
- Deuterium fractionation and CO depletion in Barnard 5