To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is conducted of a sample of 41 low-luminosity YSOs (L~ 0.1–10 (L☉) using 3-38 μm Spitzer and ground-based spectra. The sample is complemented with previously published Spitzerspectra of background stars and with ISO spectra of well-studied massive YSOs ((L ~ 105L☉). The long-known 6.0 and 6.85 μm bands are detected toward all sources, with the Class 0-type YSOs showing the deepest bands ever observed. The 6.0 μm band is often deeper than expected from the bending mode of pure solid H2O. The additional 5-7 μm absorption consists of five independent components, which, by comparison to laboratory studies, must be from at least eight different carriers...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
A powerful way to observe directly the solid state inventory of dense molecular clouds is by infrare...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
International audienceTo study the physical and chemical evolution of ices in solar-mass systems, a ...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
International audienceA powerful way to directly observe the solid-state inventory of dense molecula...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
A powerful way to observe directly the solid state inventory of dense molecular clouds is by infrare...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
International audienceTo study the physical and chemical evolution of ices in solar-mass systems, a ...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
International audienceA powerful way to directly observe the solid-state inventory of dense molecula...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
NH3 and CH3OH are key molecules in astrochemical networks leading to the formation of more complex N...
A powerful way to observe directly the solid state inventory of dense molecular clouds is by infrare...