Aims. Determining molecular abundance ratios is important not only for the study of Galactic chemistry, but also because they are useful to estimate physical parameters in a large variety of interstellar medium environments. One of the most important molecules for tracing the molecular gas in the interstellar medium is CO, and the 13CO/C18O abundance ratio is usually used to estimate molecular masses and densities of regions with moderate to high densities. Nowadays isotope ratios are in general indirectly derived from elemental abundances ratios. We present the first 13CO/C18O abundance ratio study performed from CO isotope observations towards a large sample of Galactic sources of different natures at different locations. Methods. To stud...
Context. The determination of interstellar abundances is essential for a better understanding of st...
Author Institution: Department of Physics and Astronomy, University of Toledo, Toledo, OH; 43606; As...
Observations of 13CO are indispensable for probing physical conditions in the molecular interstellar...
Aims. Determining molecular abundance ratios is important not only for the study of Galactic chemist...
Aims. Estimating molecular abundances ratios from directly measuring the emission of the molecules t...
This study reports an unusual heterogeneity in [12C16O]/[13C16O] abundance ratios of carbon monoxide...
Abstract We present our observations on the J=1-0 rotation transitions of isotope molec-ular C18O an...
Aims. Estimating molecular abundances ratios from directly measuring the emission of the molecules t...
The 12CO/13CO ratio is often used as a measure of the 12C/13C ratio in the circumstellar environment...
Context. Isotope abundance ratios provide a powerful tool for tracing stellar nucleosynthesis, evalu...
We use the IRAM Large Program EMPIRE and new high-resolution ALMA data to measure 13CO(1-0)/C18O(1-0...
International audienceContext. Measuring isotopic ratios is a sensitive technique used to obtain inf...
Context. One of the methods for deriving disk masses relies on direct observations of the ...
Robust knowledge of the distribution, amount, and physical/chemical state of the cold molecular (H2)...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context. The determination of interstellar abundances is essential for a better understanding of st...
Author Institution: Department of Physics and Astronomy, University of Toledo, Toledo, OH; 43606; As...
Observations of 13CO are indispensable for probing physical conditions in the molecular interstellar...
Aims. Determining molecular abundance ratios is important not only for the study of Galactic chemist...
Aims. Estimating molecular abundances ratios from directly measuring the emission of the molecules t...
This study reports an unusual heterogeneity in [12C16O]/[13C16O] abundance ratios of carbon monoxide...
Abstract We present our observations on the J=1-0 rotation transitions of isotope molec-ular C18O an...
Aims. Estimating molecular abundances ratios from directly measuring the emission of the molecules t...
The 12CO/13CO ratio is often used as a measure of the 12C/13C ratio in the circumstellar environment...
Context. Isotope abundance ratios provide a powerful tool for tracing stellar nucleosynthesis, evalu...
We use the IRAM Large Program EMPIRE and new high-resolution ALMA data to measure 13CO(1-0)/C18O(1-0...
International audienceContext. Measuring isotopic ratios is a sensitive technique used to obtain inf...
Context. One of the methods for deriving disk masses relies on direct observations of the ...
Robust knowledge of the distribution, amount, and physical/chemical state of the cold molecular (H2)...
Carbon and oxygen isotope ratios are excellent measures of nuclear processing, but few suc...
Context. The determination of interstellar abundances is essential for a better understanding of st...
Author Institution: Department of Physics and Astronomy, University of Toledo, Toledo, OH; 43606; As...
Observations of 13CO are indispensable for probing physical conditions in the molecular interstellar...