Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict relatively high levels of molecular oxygen, O-2, and water, H2O. These high abundances imply high cooling rates, leading to relatively short timescales for the evolution of gravitationally unstable dense cores, forming stars and planets. Contrary to expectations, the dedicated space missions SWAS and Odin typically found only very small amounts of water vapour and essentially no O-2 in the dense star-forming interstellar medium.Aims. Only toward rho OphA did Odin detect a very weak line of O-2 at 119 GHz in a beam of size 10 arcmin. The line emission of related molecules changes on angular scales of the order of some tens of arcseconds, requirin...
Context. According to traditional gas-phase chemical models, O_2 should be abundant in molecular clo...
Context. According to traditional gas-phase chemical models, O$_{2}$ should be abundant in molecul...
Context.Molecular oxygen, O2, has been expected historically to be an abundant component of the chem...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. According to traditional gas-phase chemical models, O-2 should be abundant in molecular clo...
Context. According to traditional gas-phase chemical models, O-2 should be abundant in molecular clo...
Context. Molecular oxygen, O 2, has been expected historically to be an abundant component of the ch...
Context.Molecular oxygen, O2, has been expected historically to be an abundant component of the chem...
Context. According to traditional gas-phase chemical models, O_2 should be abundant in molecular clo...
Context. According to traditional gas-phase chemical models, O$_{2}$ should be abundant in molecul...
Context.Molecular oxygen, O2, has been expected historically to be an abundant component of the chem...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. Models of pure gas-phase chemistry in well-shielded regions of molecular clouds predict rel...
Context. According to traditional gas-phase chemical models, O-2 should be abundant in molecular clo...
Context. According to traditional gas-phase chemical models, O-2 should be abundant in molecular clo...
Context. Molecular oxygen, O 2, has been expected historically to be an abundant component of the ch...
Context.Molecular oxygen, O2, has been expected historically to be an abundant component of the chem...
Context. According to traditional gas-phase chemical models, O_2 should be abundant in molecular clo...
Context. According to traditional gas-phase chemical models, O$_{2}$ should be abundant in molecul...
Context.Molecular oxygen, O2, has been expected historically to be an abundant component of the chem...