Aims. We aim to understand the star formation associated with the luminous young stellar object (YSO) IRAS 18345-0641 and to address the complications arising from unresolved multiplicity in interpreting the observations of massive star-forming regions. Methods. New infrared imaging data at sub-arcsec spatial resolution are obtained for IRAS 18345-0641. The new data are used along with mid- and far-IR imaging data, and CO (J = 3−2) spectral line maps downloaded from archives to identify the YSO and study the properties of the outflow. Available radiative-transfer models are used to analyze the spectral energy distribution (SED) of the YSO. Results. Previou...
Embedded Young Stellar Objects (YSO) in dense interstellar clouds is treated self-consistently to un...
Context. The mechanism of formation of massive stars is still a matter of debate. It is not yet clea...
The central kpc of the Milky Way might be expected to differ significantly from the rest of the Gala...
Aims. We seek to understand the way massive stars form. The case of a luminous YSO IRAS 17...
The luminous Young Stellar Object (YSO) IRAS 07422-2001 is studied in the infrared. We discover star...
The luminous young stellar object (YSO) IRAS 07422-2001 is studied in the infrared (IR). We discover...
Context.IRAS 20343+4129 was suggested to harbor one of the most massive and embedded stars in the Cy...
[[abstract]]Context. IRAS 20343+ 4129 was suggested to harbor one of the most massive and embedded s...
UCHII regions are an important phase in the formation and early evolution of massive stars and a key...
Context. Molecular outflows from high-mass young stellar objects provide an excellent way to study t...
Embedded Young Stellar Objects (YSO) in dense interstellar clouds is treated self-consistently to un...
High resolution far IR observations at 50 and 100 microns were made of the young stellar object (YSO...
We present new mid-infrared interferometric observations of the massive young stellar object IRAS 13...
Aims. This work aims at investigating the molecular gas component in the vicinity of two young stell...
11 pages, 4 figures, to appear in Proceedings of SPIE Astronomical Telescopes and Instrumentation 20...
Embedded Young Stellar Objects (YSO) in dense interstellar clouds is treated self-consistently to un...
Context. The mechanism of formation of massive stars is still a matter of debate. It is not yet clea...
The central kpc of the Milky Way might be expected to differ significantly from the rest of the Gala...
Aims. We seek to understand the way massive stars form. The case of a luminous YSO IRAS 17...
The luminous Young Stellar Object (YSO) IRAS 07422-2001 is studied in the infrared. We discover star...
The luminous young stellar object (YSO) IRAS 07422-2001 is studied in the infrared (IR). We discover...
Context.IRAS 20343+4129 was suggested to harbor one of the most massive and embedded stars in the Cy...
[[abstract]]Context. IRAS 20343+ 4129 was suggested to harbor one of the most massive and embedded s...
UCHII regions are an important phase in the formation and early evolution of massive stars and a key...
Context. Molecular outflows from high-mass young stellar objects provide an excellent way to study t...
Embedded Young Stellar Objects (YSO) in dense interstellar clouds is treated self-consistently to un...
High resolution far IR observations at 50 and 100 microns were made of the young stellar object (YSO...
We present new mid-infrared interferometric observations of the massive young stellar object IRAS 13...
Aims. This work aims at investigating the molecular gas component in the vicinity of two young stell...
11 pages, 4 figures, to appear in Proceedings of SPIE Astronomical Telescopes and Instrumentation 20...
Embedded Young Stellar Objects (YSO) in dense interstellar clouds is treated self-consistently to un...
Context. The mechanism of formation of massive stars is still a matter of debate. It is not yet clea...
The central kpc of the Milky Way might be expected to differ significantly from the rest of the Gala...