Aims. Excitation of far-infrared and submillimetric molecular lines may originate from nonreactive collisions, chemical formation, or far infrared, near-infrared, and optical fluorescences. As a template, we investigate the impact of each of these processes on the excitation of the methylidyne cation CH+ and on the intensities of its rotational transitions recently detected in emission in dense photodissociation regions (PDRs) and in planetary nebulae. Methods. We have developed a nonlocal thermodynamic equilibrium excitation model that includes the entire energy structure of CH+, i.e. taking into account the pumping of its vibrational and bound and unbound electr...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
We present a detailed theoretical study of the rotational excitation of CH+ due to reactive and non...
In order to observe quantitatively organic molecules in interstellar gas, it is necessary to underst...
Aims. Excitation of far-infrared and submillimetric molecular lines may originate from non...
Aims. Excitation of far-infrared and submillimetric molecular lines may originate from non...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
[Context] The methylidyne cation (CH) and hydroxyl (OH) are key molecules in the warm interstellar c...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
9 pags., 8 figs.We present a detailed theoretical study of the rotational excitation of CH+ due to r...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
We present a detailed theoretical study of the rotational excitation of CH+ due to reactive and non...
In order to observe quantitatively organic molecules in interstellar gas, it is necessary to underst...
Aims. Excitation of far-infrared and submillimetric molecular lines may originate from non...
Aims. Excitation of far-infrared and submillimetric molecular lines may originate from non...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
[Context] The methylidyne cation (CH) and hydroxyl (OH) are key molecules in the warm interstellar c...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
International audienceContext. The methylidyne cation (CH ) and hydroxyl (OH) are key molecules in t...
9 pags., 8 figs.We present a detailed theoretical study of the rotational excitation of CH+ due to r...
Context. The methylidyne cation (CH+) and hydroxyl (OH) are key molecules in the warm interstellar c...
We present a detailed theoretical study of the rotational excitation of CH+ due to reactive and non...
In order to observe quantitatively organic molecules in interstellar gas, it is necessary to underst...