Context. The interstellar region within the few central parsecs around the super-massive black hole, Sgr A∗, at the very Galactic center is composed of a number of overlapping molecular structures that are subject to one of the most hostile physical environments in the Galaxy. Aims. Through the study of the morphology and kinematics of the emission from different molecular species as well as the variation of their line ratios we can attain a deeper understanding of the distribution and interaction between different gas structures and the energetic phenomena taking place in the surroundings of Sgr A∗ and of the physical processes responsible for the heating in t...
Context. The HCN, HCO+, and HNC molecules are commonly used as tracers of dense star-forming gas in ...
Aims. We study the chemical complexity towards the central parts of the starburst galaxy M 82, and i...
Context. This paper is part of a multi-species survey of line emission from the molecular gas in the...
Context. The interstellar region within the few central parsecs around the super-massive b...
Aims. We aim to reveal the morphology, chemical composition, kinematics, and to establish the main p...
Aims. We aim to reveal the morphology, chemical composition, kinematics, and to establish the main p...
Aims. The circumnuclear disk (CND) of the Galactic center is exposed to many energetic phenomena com...
Studying the molecular phase of the interstellar medium in galaxy nuclei is fundamental for the unde...
Interstellar molecular clouds play an essential role in the Universe. Such clouds are invoked for th...
Aims. We study the chemistry in the harsh environments of galactic nuclei using the neares...
Context. The HCN, HCO+, and HNC molecules are commonly used as tracers of dense star-forming gas in ...
Our Galactic center hosts the closest known supermassive black hole candidate. With a mass of approx...
Stephan's Quintet (SQ) is a system consisting of at least four interacting galaxies which is well kn...
International audienceTo advance our understanding of the fuelling and feedback processes which powe...
Context. Sagittarius B2 (north) is a chemically rich, high-mass star-forming region located within t...
Context. The HCN, HCO+, and HNC molecules are commonly used as tracers of dense star-forming gas in ...
Aims. We study the chemical complexity towards the central parts of the starburst galaxy M 82, and i...
Context. This paper is part of a multi-species survey of line emission from the molecular gas in the...
Context. The interstellar region within the few central parsecs around the super-massive b...
Aims. We aim to reveal the morphology, chemical composition, kinematics, and to establish the main p...
Aims. We aim to reveal the morphology, chemical composition, kinematics, and to establish the main p...
Aims. The circumnuclear disk (CND) of the Galactic center is exposed to many energetic phenomena com...
Studying the molecular phase of the interstellar medium in galaxy nuclei is fundamental for the unde...
Interstellar molecular clouds play an essential role in the Universe. Such clouds are invoked for th...
Aims. We study the chemistry in the harsh environments of galactic nuclei using the neares...
Context. The HCN, HCO+, and HNC molecules are commonly used as tracers of dense star-forming gas in ...
Our Galactic center hosts the closest known supermassive black hole candidate. With a mass of approx...
Stephan's Quintet (SQ) is a system consisting of at least four interacting galaxies which is well kn...
International audienceTo advance our understanding of the fuelling and feedback processes which powe...
Context. Sagittarius B2 (north) is a chemically rich, high-mass star-forming region located within t...
Context. The HCN, HCO+, and HNC molecules are commonly used as tracers of dense star-forming gas in ...
Aims. We study the chemical complexity towards the central parts of the starburst galaxy M 82, and i...
Context. This paper is part of a multi-species survey of line emission from the molecular gas in the...