Nitrogen hydrides and the H2 ortho-to-para ratio in dark clouds
arXiv:1111.1572 · doi:10.1051/0004-6361/201117765
Abstract
Nitrogen bearing species are common tracers of the physical conditions in a wide variety of objects, and most remarkably in dark clouds. The reservoir of gaseous nitrogen is expected to be atomic or molecular, but none of the two species are observable in the dark gas. Their abundances therefore derive indirectly from those of N-bearing species through chemical modelling. The recent years have accumulated data which stress our incomplete understanding of the nitrogen chemistry in dark cloud conditions. To tackle this problem of the nitrogen chemistry in cold gas, we have revised the formation of nitrogen hydrides, which is initiated by the key reaction \ce{N+ + H2 -> NH+ + H}. We propose a new rate for this reaction which depends on the ortho-to-para ratio of H2. This new rate allows to reproduce the abundance ratios of the three nitrogen hydrides, NH, \ce{NH2}, and \ce{NH3}, observed towards IRAS16293-2422, provided that the channel leading to NH from the dissociative recombination of \ce{N2H+} is not closed at low temperature. The ortho-to-para ratio of H2 is constrained to O/P= by the abundance ratio NH:NH2, which provides a new method to measure O/P. This work stresses the need for reaction rates at the low temperatures of dark clouds, and for branching ratios of critical dissociative recombination reactions.
Accepted for publication in A\&A
References in corpus (11)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- Observing the gas temperature drop in the high-density nucleus of L 1544
- Polycylcic Aromatic Hydrocarbons (PAH's) in dense cloud chemistry
- The importance of the ortho:para H2 ratio for the deuteration of molecules during pre-protostellar collapse
- The chemical composition of the Orion star-forming region. III. C, N, Ne, Mg and Fe abundances in B-type stars revisited
- On the Ortho:Para Ratio of H3+ in Diffuse Molecular Clouds
- The Ionization Fraction of Barnard 68: Implications for Star and Planet Formation
- Detection of HNC and tentative detection of CN at z=3.9
- Molecules in the disk orbiting the twin young suns of V4046 Sgr
- CN in prestellar cores
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- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Protostellar Core Formation
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- Isotopic Anomalies in Primitive Solar System Matter: Spin-state Dependent Fractionation of Nitrogen and Deuterium in Interstellar Clouds
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- The origin of gas-phase HCO and CH3O radicals in prestellar cores
- Cosmic ray induced ionisation of a molecular cloud shocked by the W28 supernova remnant
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- Spin-state chemistry of deuterated ammonia
- Detection of the Ammonium Ion in Space
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- Deuteration of ammonia in the starless core Ophiuchus/H-MM1
- The CN/C15 N isotopic ratio towards dark clouds
- Revised Models of Interstellar Nitrogen Isotopic Fractionation
- The C(3P) + NH3 reaction in interstellar chemistry: II. Low temperature rate constants and modeling of NH, NH2 and NH3 abundances in dense interstellar clouds
- Chemical modeling of water deuteration in IRAS16293-2422
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- Water deuterium fractionation in the high-mass star-forming region G34.26+0.15 based on Herschel/HIFI data
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- Modeling deuterium chemistry in starless cores: full scrambling versus proton hop
- Modelling the molecular composition and nuclear-spin chemistry of collapsing prestellar sources
- Water deuterium fractionation in the inner regions of two solar type protostars
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- Chemical modeling of the L1498 and L1517B prestellar cores: CO and HCO+ depletion
- The ortho-to-para ratio of water in interstellar clouds
- Tracers of the ionization fraction in dense and translucent gas: I. Automated exploitation of massive astrochemical model grids
- Collisional excitation of doubly and triply deuterated ammonia NDH and ND by H
- Stratified NH and ND emission in the prestellar core 16293E in L1689N
- On the Inference of the Cosmic Ray Ionization Rate from the HCO-to-DCO Abundance Ratio: The Effect of Nuclear Spin
- Improved determination of the 1(0)-0(0) rotational frequency of NH3D+ from the high resolution spectrum of the v4 infrared band
- On the role of the H2 ortho:para ratio in gravitational collapse during star formation
- Revealing The CO X-factor In Dark Molecular Gas through Sensitive ALMA Absorption Observations
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- The role of highly vibrationally excited H2 initiating the N chemistry: Quantum study and 3-sigma detection of NH emission in the Orion Bar PDR
- Combined model for , , and spin-state chemistry in molecular clouds
- Chemical evolution of Red MSX Sources in the southern sky
- First survey of HCNH in high-mass star-forming cloud cores
- The D/H Ratio of Water Ice at Low Temperatures
- Dissociative recombination measurements of NH using an ion storage ring
- Measurements of Ortho-to-para Nuclear Spin Conversion of H2 on Low-temperature Carbonaceous Grain Analogues: Diamond-like Carbon and Graphite
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- Modeling ionic reactions at interstellar temperatures: the case of NH2- + H2 <--> NH3 + H-
- Sustained oscillations in Interstellar chemistry models
- Chemical evolution of N2H+ in six massive star-forming regions
- The ortho-to-para ratio of interstellar NH: Quasi-classical trajectory calculations and new simulations
- Analysis of Low Excitation HDO Transitions Toward the High-Mass Star-forming Regions G34.26+0.15, W51e/e, and W49N
- Physical and chemical properties of Red MSX Sources in the southern sky: HII regions
- Gas phase Elemental abundances in Molecular cloudS (GEMS). IX. Deuterated compounds of H2S in starless cores
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- Submillimetre and far-infrared spectroscopy of monodeuterated amidogen radical (NHD): improved rest-frequencies for astrophysical observations
- New Bistable Solutions in Molecular Cloud Chemistry: Nitrogen and Carbon Autocatalysis
- Gas-phase Elemental abundances in Molecular cloudS (GEMS) XI. The evolution of HCN, HNC, and N2H+ isotopic ratios in starless cores
- Cosmic-ray induced sputtering of interstellar formaldehyde ices
- c-C3H2 deuteration towards prestellar and starless cores in the Perseus Molecular Cloud