International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant branch stars are sites where a variety of processes such as thermochemical equilibrium, shocks induced by the stellar pulsation, and condensation of dust grains determine the chemical composition of the material that is expelled into the outer envelope layers and, ultimately, into interstellar space. Aims: We aim at studying the abundances, throughout the whole circumstellar envelope of the carbon star IRC +10216, of several molecules formed in the inner layers in order to constrain the different processes at work in such regions. Methods: Observations towards IRC +10216 of CS, SiO, SiS, NaCl, KCl, AlCl, AlF, and NaCN have been carried out w...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circumstellar e...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circu...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circu...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
Context. The inner layers of circumstellar envelopes around asymptotic giant branch stars are sites ...
Context. The inner layers of circumstellar envelopes around asymptotic giant branch stars are sites ...
Received; accepted Context. The inner layers of circumstellar envelopes around AGB stars are sites w...
This thesis describes an investigation of the physical conditions and molecular abundances in mass-l...
Aims. We model the chemistry of the inner wind of the carbon star IRC+10216 and consider the effects...
Aims. We model the chemistry of the inner wind of the carbon star IRC+10216 and consider the effects...
The carbon-star envelope IRC +10216 harbors a rich variety of molecules, with more than 80...
The carbon-star envelope IRC +10216 harbors a rich variety of molecules, with more than 80...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circumstellar e...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circu...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circu...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
International audienceContext. The inner layers of circumstellar envelopes around asymptotic giant b...
Context. The inner layers of circumstellar envelopes around asymptotic giant branch stars are sites ...
Context. The inner layers of circumstellar envelopes around asymptotic giant branch stars are sites ...
Received; accepted Context. The inner layers of circumstellar envelopes around AGB stars are sites w...
This thesis describes an investigation of the physical conditions and molecular abundances in mass-l...
Aims. We model the chemistry of the inner wind of the carbon star IRC+10216 and consider the effects...
Aims. We model the chemistry of the inner wind of the carbon star IRC+10216 and consider the effects...
The carbon-star envelope IRC +10216 harbors a rich variety of molecules, with more than 80...
The carbon-star envelope IRC +10216 harbors a rich variety of molecules, with more than 80...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circumstellar e...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circu...
Context. IRC +10216 is the prototypical carbon star exhibiting an extended molecular circu...