Context. Complex molecules such as ethanol and dimethyl ether have been observed in a number of hot molecular cores and hot corinos. Attempts to model the molecular formation process using gas phase only models have so far been unsuccessful. Aims. To demonstrate that grain surface processing is a viable mechanism for complex molecule formation in these environments. Methods. A variable environment parameter computer model has been constructed which includes both gas and surface chemistry. This is used to investigate a variety of cloud collapse scenarios. Results. Comparison between model results and observation shows that by combining grain surface processing with gas phase chemistry complex molecules can be...
Author Institution: The Ohio State UniversityAn understanding of the complex grain-surface chemistry...
Aims.We have recently developed a microscopic Monte Carlo approach to study surface chemistry on int...
Aims.We study the chemical origin of a set of complex organic molecules thought to be produced by gr...
Context. Complex molecules such as ethanol and dimethyl ether have been observed in a number of ho...
Author Institution: Division of Chemistry, California Institute of Technology, Pasadena, CA 91125; D...
Molecules of increasing complexity are being observed toward star-forming regions, including the rec...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Author Institution: Departments of Chemistry and Astronomy, University of Illinois at Urbana-Champai...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Aims.The production of saturated organic molecules in hot cores and corinos is not well understood. ...
International audienceContext. Mantles of iced water mixed with carbon monoxyde, formaldehyde, and m...
Author Institution: Department of Physics, Ohio State University, 191 W. Woodruff Ave, Columbus, OH ...
Author Institution: The Ohio State UniversityAn understanding of the complex grain-surface chemistry...
Aims.We have recently developed a microscopic Monte Carlo approach to study surface chemistry on int...
Aims.We study the chemical origin of a set of complex organic molecules thought to be produced by gr...
Context. Complex molecules such as ethanol and dimethyl ether have been observed in a number of ho...
Author Institution: Division of Chemistry, California Institute of Technology, Pasadena, CA 91125; D...
Molecules of increasing complexity are being observed toward star-forming regions, including the rec...
International audienceContext. Water and O2 are important gas phase ingredients for cooling dense ga...
Author Institution: Departments of Chemistry and Astronomy, University of Illinois at Urbana-Champai...
Context. Water and O2 are important gas phase ingredients for cooling dense gas when formi...
Context. The physical conditions in a collapsing cloud can be traced by observations of molecular li...
During the evolution of diffuse clouds to molecular clouds, gas-phase molecules freeze out on surfac...
Aims.The production of saturated organic molecules in hot cores and corinos is not well understood. ...
International audienceContext. Mantles of iced water mixed with carbon monoxyde, formaldehyde, and m...
Author Institution: Department of Physics, Ohio State University, 191 W. Woodruff Ave, Columbus, OH ...
Author Institution: The Ohio State UniversityAn understanding of the complex grain-surface chemistry...
Aims.We have recently developed a microscopic Monte Carlo approach to study surface chemistry on int...
Aims.We study the chemical origin of a set of complex organic molecules thought to be produced by gr...