H2O is the most abundant component of astrophysical ices. In most lines of sight it is not possible to fit both the H2O 3 m stretching, the 6 m bending intensities with a single pure H2O spectrum. Recent Spitzer observations have revealed CO2 ice in high abundances and it has been suggested that CO2 mixed into H2O ice can affect the positions, shapes and relative strengths of the 3 m and 6 m bands. We investigate whether the discrepancy in intensity between H2O bands in interstellar clouds and star forming regions can be explained by CO2 mixed into the observed H2O ice affecting the bands differently. Laboratory infrared transmission spectroscopy is used to record spectra of H2O:CO2 ice mixtures at astrophysically relevant temperatures and ...
Context.HCOOH is one of the more common species in interstellar ices with abundances of 1–5% with re...
The relative abundances of ices in astrophysical environments rely on accurate laboratory measuremen...
Context. New spectroscopic observations in the far-infrared (IR) range are expected from future plan...
Context. H2O is the most abundant component of astrophysical ices. In most lines of sight it is not ...
Context.H2O is the most abundant component of astrophysical ices. In most lines of sight it is not p...
H2O is the most abundant component of astrophysical ices. In most lines of sight it is not possible ...
Context.Laboratory spectroscopic research plays a key role in the identification and analysis of in...
Spectroscopic studies play a key role in the identification and analysis of interstellar ices and th...
Data of the Infrared Space Observatory ISO have strongly influenced the current view of interstellar...
The spectra of pure, mixed and layered CO and CO2 ices have been studied systematically under labora...
AbstractWe present near-IR spectra of solid CO2 in H2O and CH3OH, and find they are significantly di...
Context. Whereas observational astronomy now routinely extends to the far-infrared region of the spe...
The spectra of pure, mixed and layered CO and CO2 ices have been studied systematically under labora...
Infrared observations of the interstellar medium revealed the presence of several molecules in the s...
Laboratory spectra have shown that CO2 is a powerful diagnostic tool for analyzing infrared data fro...
Context.HCOOH is one of the more common species in interstellar ices with abundances of 1–5% with re...
The relative abundances of ices in astrophysical environments rely on accurate laboratory measuremen...
Context. New spectroscopic observations in the far-infrared (IR) range are expected from future plan...
Context. H2O is the most abundant component of astrophysical ices. In most lines of sight it is not ...
Context.H2O is the most abundant component of astrophysical ices. In most lines of sight it is not p...
H2O is the most abundant component of astrophysical ices. In most lines of sight it is not possible ...
Context.Laboratory spectroscopic research plays a key role in the identification and analysis of in...
Spectroscopic studies play a key role in the identification and analysis of interstellar ices and th...
Data of the Infrared Space Observatory ISO have strongly influenced the current view of interstellar...
The spectra of pure, mixed and layered CO and CO2 ices have been studied systematically under labora...
AbstractWe present near-IR spectra of solid CO2 in H2O and CH3OH, and find they are significantly di...
Context. Whereas observational astronomy now routinely extends to the far-infrared region of the spe...
The spectra of pure, mixed and layered CO and CO2 ices have been studied systematically under labora...
Infrared observations of the interstellar medium revealed the presence of several molecules in the s...
Laboratory spectra have shown that CO2 is a powerful diagnostic tool for analyzing infrared data fro...
Context.HCOOH is one of the more common species in interstellar ices with abundances of 1–5% with re...
The relative abundances of ices in astrophysical environments rely on accurate laboratory measuremen...
Context. New spectroscopic observations in the far-infrared (IR) range are expected from future plan...