The 15N-enrichment in dark clouds and Solar System objects
arXiv:1302.6318 · doi:10.1016/j.icarus.2012.12.015
Abstract
The line intensities of the fundamental rotational transitions of H13CN and HC15N were observed towards two prestellar cores, L183 and L1544, and lead to molecular isotopic ratios 140 6 14N/15N 6 250 and 140 6 14N/15N 6 360, respectively. The range of values reflect genuine spatial variations within the cores. A comprehensive analysis of the available measurements of the nitrogen isotopic ratio in prestellar cores show that molecules carrying the nitrile functional group appear to be systematically 15N-enriched com- pared to those carrying the amine functional group. A chemical origin for the differential 15N-enhance- ment between nitrile- and amine-bearing interstellar molecules is proposed. This sheds new light on several observations of Solar System objects: (i) the similar N isotopic fractionation in Jupiter's NH3 and solar wind N+; (ii) the 15N-enrichments in cometary HCN and CN (that might represent a direct inter- stellar inheritance); and (iii) 15N-enrichments observed in organics in primitive cosmomaterials. The large variations in the isotopic composition of N-bearing molecules in Solar System objects might then simply reflect the different interstellar N reservoirs from which they are originating.
References in corpus (3)
Cited by in corpus (54)
- Isotopic fractionation of carbon, deuterium and nitrogen : a full chemical study
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- Nitrogen isotopic ratios in Barnard 1: a consistent study of the N2H+, NH3, CN, HCN and HNC isotopologues
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- Consistent dust and gas models for protoplanetary disks: II. Chemical networks and rates
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- Detection of (15)NNH+ in L1544: non-LTE modelling of dyazenilium hyperfine line emission and accurate (14)N/(15)N values
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- Direct evidence of multiple reservoirs of volatile nitrogen in a protosolar nebula analogue
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- Nitrogen and hydrogen fractionation in high-mass star forming cores from observations of HCN and HNC
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- The nitrogen isotopic ratio of HC3N towards the L1544 prestellar core
- An unbiased spectral line survey observation toward the low-mass star-forming region L1527
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- Precise observations of the 12C/13C ratios of HC3N in the low-mass star-forming region L1527
- 15N Fractionation in Infrared-Dark Cloud Cores
- An ALMA Survey of Chemistry in Disks around M4-M5 Stars
- CHEMOUT: CHEMical complexity in star-forming regions of the OUTer Galaxy III. Nitrogen isotopic ratios in the outer Galaxy
- First Detection of HCN in the Interstellar Medium
- Depletion and fractionation of nitrogen in collapsing cores
- Exploring the Origins of Earth's Nitrogen: Astronomical Observations of Nitrogen-bearing Organics in Protostellar Environments
- Linking the dust and chemical evolution: Taurus and Perseus -- New collisional rates for HCN, HNC, and their C, N, and H isotopologues
- First survey of HCNH in high-mass star-forming cloud cores
- Similar levels of deuteration in the pre-stellar core L1544 and the protostellar core HH211
- Nitrogen fractionation towards a pre-stellar core traces isotope-selective photodissociation
- Nitrogen fractionation in ammonia and its insights on nitrogen chemistry
- Nitrogen Fractionation in External Galaxies
- First sample of nitrogen isotopic ratio measurements in low-mass protostars
- Depletion of 15N in the center of L1544: Early transition from atomic to molecular nitrogen?
- No nitrogen fractionation on 600 au scale in the Sun progenitor analogue OMC-2 FIR4
- ALMA-IRDC II. First high-angular resolution measurements of the 14N/15N ratio in a large sample of infrared-dark cloud cores
- Radial variations in nitrogen, carbon, and hydrogen fractionation in the PDS 70 planet-hosting disk
- Seeds of Life in Space (SOLIS). XIII. Nitrogen fractionation towards the protocluster OMC-2 FIR4
- Isotopic fractionation in interstellar molecules
- Gas-phase Elemental abundances in Molecular cloudS (GEMS) XI. The evolution of HCN, HNC, and N2H+ isotopic ratios in starless cores
- Seed of Life in Space (SOLIS) XI. First measurement of nitrogen fractionation in shocked clumps of the L1157 protostellar outflow