Infrared spectroscopy of HCOOH in interstellar ice analogues
arXiv:0705.0002 · doi:10.1051/0004-6361:20077464
Abstract
Context: HCOOH is one of the more common species in interstellar ices with abundances of 1-5% with respect to solid H2O. Aims: This study aims at characterizing the HCOOH spectral features in astrophysically relevant ice mixtures in order to interpret astronomical data. Methods: The ices are grown under high vacuum conditions and spectra are recorded in transmission using a Fourier transform infrared spectrometer. Pure HCOOH ices deposited at 15 K and 145 K are studied, as well as binary and tertiary mixtures containing H2O, CO, CO2 and CH3OH. The mixture concentrations are varied from 50:50% to ~10:90% for HCOOH:H2O. Binary mixtures of HCOOH:X and tertiary mixtures of HCOOH:H2O:X with X = CO, CO2, and CH3OH, are studied for concentrations of ~10:90% and ~7:67:26%, respectively. Results: Pure HCOOH ice spectra show broad bands which split around 120 K due to the conversion of a dimer to a chain-structure. Broad single component bands are found for mixtures with H2O. Additional spectral components are present in mixtures with CO, CO2 and CH3OH. The resulting peak position, full width at half maximum and band strength depend strongly on ice structure, temperature, matrix constituents and the HCOOH concentration. Comparison of the solid HCOOH 5.9, 7.2, and 8.1 micron features with astronomical data toward the low mass source HH 46 and high mass source W 33A shows that spectra of binary mixtures do not reproduce the observed ice features. However, our tertiary mixtures especially with CH3OH match the astronomical data very well. Thus interstellar HCOOH is most likely present in tertiary or more complex mixtures with H2O, CH3OH and potentially also CO or CO2, providing constraints on its formation.
11 pages, 10 figures, accepted by A&A
References in corpus (2)
Cited by in corpus (18)
- A non-energetic mechanism for glycine formation in the interstellar medium
- CORINOS I: JWST/MIRI Spectroscopy and Imaging of a Class 0 protostar IRAS 15398-3359
- H-atom bombardment of CO2, HCOOH and CH3CHO containing ices
- LIDA - The Leiden Ice Database for Astrochemistry
- Band profiles and band strengths in mixed H2O:CO ices
- An overview of desorption parameters of Volatile and Complex Organic Molecules: A systematic dig on experimental literature
- Infrared spectra of complex organic molecules in astronomically relevant ice mixtures. V. Methyl cyanide (acetonitrile)
- Processing of formic acid-containing ice by heavy and energetic cosmic ray analogues
- The hunt for formamide in interstellar ices: A toolkit of laboratory infrared spectra in astronomically relevant ice mixtures and comparisons to ISO, Spitzer, and JWST observations
- Fitting infrared ice spectra with genetic modelling algorithms. Presenting the ENIIGMA fitting tool
- Extension of the HCOOH and CO2 solid-state reaction network during the CO freeze-out stage: inclusion of H2CO
- Emission from Water Vapor and Absorption from Other Gases at 5-7.5 Microns in Spitzer-IRS Spectra of Protoplanetary Disks
- A Systematic Study on the Absorption Features of Interstellar Ices in Presence of Impurities
- Protostars at Subsolar Metallicity: First Detection of Large Solid-state Complex Organic Molecules in the Large Magellanic Cloud
- Circumplanetary disk ices II. Composition
- JOYS: Linking the molecular ice and gas-phase composition towards the high-mass hot core IRAS 18089-1732
- A fast machine learning tool to predict the composition of astronomical ices from infrared absorption spectra
- 3 mm Spectroscopic Observations of Massive Star-Forming Regions with IRAM 30-m