Accepted for publication in MNRAS Letters 2017International audienceMethyl isocyanate (CH3NCO) is one of the important complex organic molecules detected on the comet 67P/Churyumov-Gerasimenko by Rosetta's Philae lander. It was also detected in hot cores around high-mass protostars along with a recent detection in the solar-type protostar IRAS 16293-2422. We propose here a gas-grain chemical model to form CH3NCO after reviewing various formation pathways with quantum chemical computations. We have used NAUTILUS 3-phase gas-grain chemical model to compare observed abundances in the IRAS 16293-2422. Our chemical model clearly indicates the ice phase origin of CH3NCO
Interstellar space is not empty; it contains gaseous and particulate matter that is concentrated int...
Methyl isocyanate (CH3NCO) was recently found in hot cores and suggested to exist on comet 67P/CG. T...
Recent detection of methyl isocyanate (\chem{CH_3NCO}) in the Orion\footnote{J. Cernicharo, N. Marce...
Accepted for publication in MNRAS Letters 2017International audienceMethyl isocyanate (CH3NCO) is on...
Methyl isocyanate (CH3NCO) is one of the important complex organic molecules detected on the comet 6...
Methyl isocyanate (CH3NCO) belongs to a select group of interstellar moleculesconsidered to be relev...
Methyl isocyanate (CH3NCO) belongs to a select group of interstellar molecules considered to be rele...
International audienceThe recent analysis of the composition of the frozen surface of comet 67P/Chur...
CPESS-5, Centro Europeo de Astronomía Espacial, ESAC en Villanueva de la Cañada, Madrid, del 6 al 8 ...
The recent analysis of the composition of the frozen surface of comet 67P/Churyumov-Gerasimenko has ...
Methyl isocyanate (CH$_{3}$NCO) belongs to a select group of interstellar molecules considered to be...
The recent analysis of the composition of the frozen surface of comet 67P/Churyumov-Gerasimenko has ...
The recent analysis of the composition of the frozen surface of comet 67P/Churyumov-Gerasimenko has ...
International audienceMethyl isocyanate has been recently detected in comet 67P/Churyumov-Gerasimenk...
Interstellar space is not empty; it contains gaseous and particulate matter that is concentrated int...
Interstellar space is not empty; it contains gaseous and particulate matter that is concentrated int...
Methyl isocyanate (CH3NCO) was recently found in hot cores and suggested to exist on comet 67P/CG. T...
Recent detection of methyl isocyanate (\chem{CH_3NCO}) in the Orion\footnote{J. Cernicharo, N. Marce...
Accepted for publication in MNRAS Letters 2017International audienceMethyl isocyanate (CH3NCO) is on...
Methyl isocyanate (CH3NCO) is one of the important complex organic molecules detected on the comet 6...
Methyl isocyanate (CH3NCO) belongs to a select group of interstellar moleculesconsidered to be relev...
Methyl isocyanate (CH3NCO) belongs to a select group of interstellar molecules considered to be rele...
International audienceThe recent analysis of the composition of the frozen surface of comet 67P/Chur...
CPESS-5, Centro Europeo de Astronomía Espacial, ESAC en Villanueva de la Cañada, Madrid, del 6 al 8 ...
The recent analysis of the composition of the frozen surface of comet 67P/Churyumov-Gerasimenko has ...
Methyl isocyanate (CH$_{3}$NCO) belongs to a select group of interstellar molecules considered to be...
The recent analysis of the composition of the frozen surface of comet 67P/Churyumov-Gerasimenko has ...
The recent analysis of the composition of the frozen surface of comet 67P/Churyumov-Gerasimenko has ...
International audienceMethyl isocyanate has been recently detected in comet 67P/Churyumov-Gerasimenk...
Interstellar space is not empty; it contains gaseous and particulate matter that is concentrated int...
Interstellar space is not empty; it contains gaseous and particulate matter that is concentrated int...
Methyl isocyanate (CH3NCO) was recently found in hot cores and suggested to exist on comet 67P/CG. T...
Recent detection of methyl isocyanate (\chem{CH_3NCO}) in the Orion\footnote{J. Cernicharo, N. Marce...