Low-mass protostars are the extrasolar analogues of the natal Solar system. Sophisticated physicochemical models are used to simulate the formation of two protoplanetary discs from the initial prestellar phase, one dominated by viscous spreading and the other by pure infall. The results show that the volatile prestellar fingerprint is modified by the chemistry en route into the disc. This holds relatively independent of initial abundances and chemical parameters: physical conditions are more important. The amount of CO2 increases via the grain-surface reaction of OH with CO, which is enhanced by photodissociation of H2O ice. Complex organic molecules are produced during transport through the envelope at the expense of CH3OH ice. Their abund...
Context. Comets are planetesimals left over from the formation of planets in the solar system. With ...
Volatiles are compounds with low sublimation temperatures, and they make up most of the condensible ...
We study the influence of transport processes on the chemical evolution of DM Tau-like protoplanetar...
Low-mass protostars are the extrasolar analogues of the natal Solar system. Sophisticated physicoche...
We set out to constrain the chemical conditions in the early Solar System by analyzing chemical evol...
Volatiles are compounds with low sublimation temperatures, and they make up most of the condensible ...
Abstract. Infrared observations, combined with realistic laboratory simulations, have revolutionized...
language editing for the abstractInternational audienceAn outstanding question of astrobiology is th...
Low mass stars, like our Sun, are born from the collapse of a molecular cloud, which is composed of ...
Context. Comets are planetesimals left over from the formation of planets in the solar system. With ...
Pre-cometary ice located around star-forming regions contains molecules that are pre-biotic compound...
International audienceContext. Solar and extrasolar comets and extrasolar planets are the subject of...
Context. Direct observations of gaseous exoplanets reveal that their gas envelope has a higher C/O r...
Context. Comets are planetesimals left over from the formation of planets in the solar system. With ...
Volatiles are compounds with low sublimation temperatures, and they make up most of the condensible ...
We study the influence of transport processes on the chemical evolution of DM Tau-like protoplanetar...
Low-mass protostars are the extrasolar analogues of the natal Solar system. Sophisticated physicoche...
We set out to constrain the chemical conditions in the early Solar System by analyzing chemical evol...
Volatiles are compounds with low sublimation temperatures, and they make up most of the condensible ...
Abstract. Infrared observations, combined with realistic laboratory simulations, have revolutionized...
language editing for the abstractInternational audienceAn outstanding question of astrobiology is th...
Low mass stars, like our Sun, are born from the collapse of a molecular cloud, which is composed of ...
Context. Comets are planetesimals left over from the formation of planets in the solar system. With ...
Pre-cometary ice located around star-forming regions contains molecules that are pre-biotic compound...
International audienceContext. Solar and extrasolar comets and extrasolar planets are the subject of...
Context. Direct observations of gaseous exoplanets reveal that their gas envelope has a higher C/O r...
Context. Comets are planetesimals left over from the formation of planets in the solar system. With ...
Volatiles are compounds with low sublimation temperatures, and they make up most of the condensible ...
We study the influence of transport processes on the chemical evolution of DM Tau-like protoplanetar...