Aims.Interplanetary dust particle (IDP) matter probably evolved under irradiation in the interstellar medium (ISM) and the solar nebula. Currently IDPs are exposed to irradiation in the Solar System. Here the effects of UV and proton processing on IDP matter are studied experimentally. The structure and chemical composition of the bulk of carbon matter in IDPs is characterized. Methods.Several IDPs were further irradiated in the laboratory using ultraviolet (UV) photons and protons in order to study the effects of such processing. By means of infrared and Raman spectroscopy, IDPs were also compared to different materials that serve as analogs of carbon grains in the dense and diffuse ISM. Results.The carbonaceous fra...
Workshop on interstellar matter (ILTS Symposium); Institute of Low Temperature Science, University ...
International audienceContext. Hydrogenated amorphous carbons (a-C:H) are a major component of the c...
Studying the chemical and isotopic composition of interstellar ice and dust provides insight into th...
Aims.Interplanetary dust particle (IDP) matter probably evolved under irradiation in the interstell...
Aims.Interplanetary dust particle (IDP) matter probably evolved under irradiation in the interstella...
70 ISMS, Champaign-Urbana, Illinois, June 22-26, 2015; http://isms.illinois.edu/2015/Carbonaceous co...
Carbonaceous compounds, both solids and gas-phase molecules, are found in very diverse astronomical ...
Context. The evolution of amorphous hydrocarbon materials, a-C(:H), principally resulting from ultra...
International audienceContext. The evolution of amorphous hydrocarbon materials, a-C(:H), principall...
The observational constraints on the composition of the interstellar dust are analyzed. The dust in ...
International audienceObservational evidence seems to indicate that the depletion of interstellar ca...
The production of a hydrogenated amorphous carbon polymer (a-C:H) via the photolysis of a series of...
Carbon grains in the interstellar medium evolve through exposure to UV photons, heat, gas, and cosmi...
Context. Hydrogenated amorphous carbons (a–C:H) are a major component of the carbonaceous solids pre...
Small carbon grains, processed by UV radiation and cosmic rays, have been proposed as carriers of th...
Workshop on interstellar matter (ILTS Symposium); Institute of Low Temperature Science, University ...
International audienceContext. Hydrogenated amorphous carbons (a-C:H) are a major component of the c...
Studying the chemical and isotopic composition of interstellar ice and dust provides insight into th...
Aims.Interplanetary dust particle (IDP) matter probably evolved under irradiation in the interstell...
Aims.Interplanetary dust particle (IDP) matter probably evolved under irradiation in the interstella...
70 ISMS, Champaign-Urbana, Illinois, June 22-26, 2015; http://isms.illinois.edu/2015/Carbonaceous co...
Carbonaceous compounds, both solids and gas-phase molecules, are found in very diverse astronomical ...
Context. The evolution of amorphous hydrocarbon materials, a-C(:H), principally resulting from ultra...
International audienceContext. The evolution of amorphous hydrocarbon materials, a-C(:H), principall...
The observational constraints on the composition of the interstellar dust are analyzed. The dust in ...
International audienceObservational evidence seems to indicate that the depletion of interstellar ca...
The production of a hydrogenated amorphous carbon polymer (a-C:H) via the photolysis of a series of...
Carbon grains in the interstellar medium evolve through exposure to UV photons, heat, gas, and cosmi...
Context. Hydrogenated amorphous carbons (a–C:H) are a major component of the carbonaceous solids pre...
Small carbon grains, processed by UV radiation and cosmic rays, have been proposed as carriers of th...
Workshop on interstellar matter (ILTS Symposium); Institute of Low Temperature Science, University ...
International audienceContext. Hydrogenated amorphous carbons (a-C:H) are a major component of the c...
Studying the chemical and isotopic composition of interstellar ice and dust provides insight into th...