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hal.structure.identifierAMOR 2019
dc.contributor.authorCOUTENS, Audrey
dc.contributor.authorLIGTERINK, N. F. W.
hal.structure.identifierInstitut des Sciences Moléculaires [ISM]
dc.contributor.authorLOISON, J.-C.
hal.structure.identifierAMOR 2019
dc.contributor.authorWAKELAM, Valentine
dc.contributor.authorCALCUTT, H.
dc.contributor.authorDROZDOVSKAYA, M. N.
hal.structure.identifierforeign laboratories [FL]
dc.contributor.authorJØRGENSEN, J. K.
dc.contributor.authorMÜLLER, H. S. P.
hal.structure.identifierMax-Planck-Institut für Extraterrestrische Physik [MPE]
dc.contributor.authorVAN DISHOECK, E. F.
hal.structure.identifierInstitute of Astronomy [ETH Zürich]
dc.contributor.authorWAMPFLER, S. F.
dc.date.issued2019-03
dc.identifier.issn0004-6361
dc.description.abstractEnNitrogen oxides are thought to play a significant role as a nitrogen reservoir and to potentially participate in the formation of more complex species. Until now, only NO, N2O, and HNO have been detected in the interstellar medium. We report the first interstellar detection of nitrous acid (HONO). Twelve lines were identified towards component B of the low-mass protostellar binary IRAS 16293–2422 with the Atacama Large Millimeter/submillimeter Array, at the position where NO and N2O have previously been seen. A local thermodynamic equilibrium model was used to derive the column density (∼9 × 1014 cm−2 in a 0 .″5 beam) and excitation temperature (∼100 K) of this molecule. HNO, NO2, NO+, and HNO3 were also searched for in the data, but not detected. We simulated the HONO formation using an updated version of the chemical code Nautilus and compared the results with the observations. The chemical model is able to reproduce satisfactorily the HONO, N2O, and NO2 abundances, but not the NO, HNO, and NH2OH abundances. This could be due to some thermal desorption mechanisms being destructive and therefore limiting the amount of HNO and NH2OH present in the gas phase. Other options are UV photodestruction of these species in ices or missing reactions potentially relevant at protostellar temperatures.
dc.language.isoen
dc.publisherEDP Sciences
dc.subject.enAstrophysics - Astrophysics of Galaxies
dc.subject.enAstrophysics - Solar and Stellar Astrophysics
dc.subject.enastrochemistry
dc.subject.enstars: formation
dc.subject.enstars: protostars
dc.subject.enISM: molecules
dc.subject.enISM: individual objects: IRAS 16293–2422
dc.title.enThe ALMA-PILS survey: First detection of nitrous acid (HONO) in the interstellar medium
dc.typeArticle de revue
dc.identifier.doi10.1051/0004-6361/201935040
dc.subject.halPhysique [physics]/Astrophysique [astro-ph]
dc.identifier.arxiv1903.03378
bordeaux.journalAstronomy and Astrophysics - A&A
bordeaux.pageL13
bordeaux.volume623
bordeaux.peerReviewedoui
hal.identifierhal-02065865
hal.version1
hal.popularnon
hal.audienceInternationale
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-02065865v1
bordeaux.COinSctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Astronomy%20and%20Astrophysics%20-%20A&A&rft.date=2019-03&rft.volume=623&rft.spage=L13&rft.epage=L13&rft.eissn=0004-6361&rft.issn=0004-6361&rft.au=COUTENS,%20Audrey&LIGTERINK,%20N.%20F.%20W.&LOISON,%20J.-C.&WAKELAM,%20Valentine&CALCUTT,%20H.&rft.genre=article


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