Context. Water and O2 are important gas phase ingredients for cooling dense gas when forming stars. On dust grains, H2O is an important constituent of the icy mantle in which a complex chemistry is taking place, as revealed by hot core observations. The formation of water can occur on dust grain surfaces, and can impact gas phase composition. Aims. The formation of molecules such as OH, H2O, HO2 and H2O2, as well as their deuterated forms and O2 and O3 is studied to assess how the chemistry varies in different astrophysical environments, and how the gas phase is affected by grain surface chemistry. Methods. We use Monte Carlo simulations to ...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Context. The formation of water on the dust grains in the interstellar medium may proceed with hydro...
Water is an important oxygen reservoir in space and is often used as a tracer of large-scale gas-pha...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Context. The formation of water on the dust grains in the interstellar medium may proceed with hydro...
Water is an important oxygen reservoir in space and is often used as a tracer of large-scale gas-pha...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
Context. Water and O(2) are important gas phase ingredients for cooling dense gas when forming stars...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Context. The formation of water on the dust grains in the interstellar medium may proceed with hydro...
Water is an important oxygen reservoir in space and is often used as a tracer of large-scale gas-pha...