A powerful way to observe directly the solid state inventory of dense molecular clouds is by infrared spectroscopy of background stars. We present Spitzer/IRS 5-20 micron spectra of ices toward stars behind the Serpens and Taurus molecular clouds, probing visual extinctions of 10-34 mag. These data provide the first complete inventory of solid-state material in dense clouds before star formation begins. The spectra show prominent 6.0 and 6.85 micron bands. In contrast to some young stellar objects (YSOs), most (~75%) of the 6.0 micron band is explained by the bending mode of pure water ice. In realistic mixtures this number increases to 85%, because the peak strength of the water bending mode is very sensitive to the molecular environment. ...
textWe present observations toward stars behind molecular clouds (back ground stars) and toward mas...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
textWe present observations toward stars behind molecular clouds (back ground stars) and toward mas...
International audienceA powerful way to directly observe the solid-state inventory of dense molecula...
Sensitive 5-38 mum Spitzer Space Telescope and ground-based 3-5 mum spectra of the embedded low-mass...
Sensitive 5-38 mum Spitzer Space Telescope and ground-based 3-5 mum spectra of the embedded low-mass...
Sensitive 5-38 mum Spitzer Space Telescope and ground-based 3-5 mum spectra of the embedded low-mass...
Sensitive 5-38 um Spitzer Space Telescope (SST) and ground based 3-5 um spectra of the embedded low ...
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 ...
textWe present observations toward stars behind molecular clouds (back ground stars) and toward mas...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
textWe present observations toward stars behind molecular clouds (back ground stars) and toward mas...
International audienceA powerful way to directly observe the solid-state inventory of dense molecula...
Sensitive 5-38 mum Spitzer Space Telescope and ground-based 3-5 mum spectra of the embedded low-mass...
Sensitive 5-38 mum Spitzer Space Telescope and ground-based 3-5 mum spectra of the embedded low-mass...
Sensitive 5-38 mum Spitzer Space Telescope and ground-based 3-5 mum spectra of the embedded low-mass...
Sensitive 5-38 um Spitzer Space Telescope (SST) and ground based 3-5 um spectra of the embedded low ...
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 ...
textWe present observations toward stars behind molecular clouds (back ground stars) and toward mas...
To study the physical and chemical evolution of ices in solar-mass systems, a spectral survey is con...
textWe present observations toward stars behind molecular clouds (back ground stars) and toward mas...