4.5 Article

The ALMA-PILS survey: First detections of deuterated formamide and deuterated isocyanic acid in the interstellar medium

期刊

ASTRONOMY & ASTROPHYSICS
卷 590, 期 -, 页码 -

出版社

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201628612

关键词

astrochemistry; stars: formation; stars: protostars; ISM: molecules; ISM: individual objects: IRAS 16293-2422; astrobiology

资金

  1. STFC grant
  2. COST action [CM1401]
  3. Lundbeck Foundation Group Leader Fellowship
  4. European Research Council (ERC) under the European Union's Horizon research and innovation programme through ERC Consolidator Grant S4F [646908]
  5. Danish National Research Foundation
  6. A-ERC grant [291141]
  7. ADS/JAO.ALMA [2013.1.00278.S]
  8. STFC [ST/M001334/1] Funding Source: UKRI
  9. Lundbeck Foundation [R52-2010-4810] Funding Source: researchfish

向作者/读者索取更多资源

Formamide (NH2CHO) has previously been detected in several star-forming regions and is thought to be a precursor for different prebiotic molecules. Its formation mechanism is still debated, however. Observations of formamide, related species, and their isopotologues may provide useful clues to the chemical pathways leading to their formation. The Protostellar Interferometric Line Survey (PILS) represents an unbiased, high angular resolution and sensitivity spectral survey of the low-mass protostellar binary IRAS 16293-2422 with the Atacama Large Millimeter/submillimeter Array (ALMA). For the first time, we detect the three singly deuterated forms of NH2CHO (NH2CDO, cis-and trans-NHDCHO), as well as DNCO towards the component B of this binary source. The images reveal that the different isotopologues are all present in the same region. Based on observations of the C-13 isotopologues of formamide and a standard C-12/C-13 ratio, the deuterium fractionation is found to be similar for the three different forms with a value of about 2%. The DNCO/HNCO ratio is also comparable to the D/H ratio of formamide (similar to 1%). These results are in agreement with the hypothesis that NH2CHO and HNCO are chemically related through grain-surface formation.

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