HCN/HNC chemistry in shocks: a study of L1157-B1 with ASAI
arXiv:2107.10596 · doi:10.1093/mnras/stab2134
Abstract
HCN and its isomer HNC play an important role in molecular cloud chemistry and the formation of more complex molecules. We investigate here the impact of protostellar shocks on the HCN and HNC abundances from high-sensitivity IRAM 30m observations of the prototypical shock region L1157-B1 and the envelope of the associated Class 0 protostar, as a proxy for the pre-shock gas. The isotopologues HCN, HNC, HCN, HNC, HCN, HNC, DCN and DNC were all detected towards both regions. Abundances and excitation conditions were obtained from radiative transfer analysis of molecular line emission under the assumption of Local Thermodynamical Equilibrium. In the pre-shock gas, the abundances of the HCN and HNC isotopologues are similar to those encountered in dark clouds, with a HCN/HNC abundance ratio for all isotopologues. A strong D-enrichment (D/H) is measured in the pre-shock gas. There is no evidence of N fractionation neither in the quiescent nor in the shocked gas. At the passage of the shock, the HCN and HNC abundances increase in the gas phase in different manners so that the HCN/HNC relative abundance ratio increases by a factor 20. The gas-grain chemical and shock model UCLCHEM allows us to reproduce the observed trends for a C-type shock with pre-shock density (H)= cm and shock velocity km/s. We conclude that the HCN/HNC variations across the shock are mainly caused by the sputtering of the grain mantle material in relation with the history of the grain ices.
14 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (16)
- A Large Catalog of Accurate Distances to Local Molecular Clouds: The Gaia DR2 Edition
- SiO line emission from C-type shock waves : interstellar jets and outflows
- Isotopic fractionation of carbon, deuterium and nitrogen : a full chemical study
- UCLCHEM: A Gas-Grain Chemical Code
- Seeds of Life in Space (SOLIS) III. Formamide in protostellar shocks: evidence for gas-phase formation
- Molecules with a peptide link in protostellar shocks: a comprehensive study of L1157
- HCN/HNC intensity ratio: a new chemical thermometer for the molecular ISM
- Phosphorus-bearing molecules in solar-type star forming regions: First PO detection
- First image of the L1157 molecular jet by the CALYPSO IRAM-PdBI survey
- The clumpy structure of the chemically active L1157 outflow
- The density structure of the L1157 molecular outflow
- Herschel Gould Belt Survey Observations of Dense Cores in the Cepheus Flare Clouds
- Nitrogen oxide in protostellar envelopes and shocks: the ASAI survey
- Fast molecular jet from L1157-mm
- The L1157-B1 astrochemical laboratory: testing the origin of DCN
- Distance, magnetic field and kinematics of a filamentary cloud LDN 1157
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- New routes for PN destruction and formation in the ISM via neutral-neutral gas-phase reactions and an extended database for reactions involving phosphorus
- The GUAPOS project. VI: the chemical inventory of shocked gas
- Shock-type inference of L1157 B2 using methanol desorption
- The Si+SO collision and an extended network of neutral-neutral reactions between silicon and sulphur bearing species