Context. The chemical composition of high-mass protostars reflects the physical evolution associated with different stages of star formation. In addition, the spatial distribution and velocity structure of different molecular species provide valuable information on the physical structure of these embedded objects. Despite an increasing number of interferometric studies, there is still a high demand for high angular resolution data to study chemical compositions and velocity structures for these objects. Aims. The molecular inventory of the forming high-mass star AFGL 4176, located at a distance of ~3.7 kpc, is studied in detail at a high angular resolution of ~0.35′′, equivalent to ~1285 au at the distance of AFGL 4176. This high resolution...
We present high angular resolution (∼ 0.3′′) submillimeter continuum (0.85 mm) and line observations...
International audienceWe present a suite of Atacama Large Millimeter Array (ALMA) interferometric mo...
The importance of ALMA to quantitatively trace the evolution of gas and dust from interstellar clou...
Context. The chemical composition of high-mass protostars reflects the physical evolution associated...
Context. Complex organic species are known to be abundant toward low- and high-mass protostars. No s...
Context. Complex organic species are known to be abundant toward low- and high-mass protostars. No s...
Context. Classical hot cores are rich in molecular emission, and they show a high abundance of compl...
Context. The inner regions of the envelopes surrounding young protostars are characterized by a comp...
Context. The inner regions of the envelopes surrounding young protostars are characterized by a comp...
he observation of molecules in the interstellar medium gives information on the physic of the format...
Context. The inner regions of the envelopes surrounding young protostars are characterized by a comp...
Context. Classical hot cores are rich in molecular emission, and they show a high abundance of compl...
Context. Classical hot cores are rich in molecular emission, and they show a high abundance of compl...
International audienceWe present a suite of Atacama Large Millimeter Array (ALMA) interferometric mo...
The importance of ALMA to quantitatively trace the evolution of gas and dust from interstellar clou...
We present high angular resolution (∼ 0.3′′) submillimeter continuum (0.85 mm) and line observations...
International audienceWe present a suite of Atacama Large Millimeter Array (ALMA) interferometric mo...
The importance of ALMA to quantitatively trace the evolution of gas and dust from interstellar clou...
Context. The chemical composition of high-mass protostars reflects the physical evolution associated...
Context. Complex organic species are known to be abundant toward low- and high-mass protostars. No s...
Context. Complex organic species are known to be abundant toward low- and high-mass protostars. No s...
Context. Classical hot cores are rich in molecular emission, and they show a high abundance of compl...
Context. The inner regions of the envelopes surrounding young protostars are characterized by a comp...
Context. The inner regions of the envelopes surrounding young protostars are characterized by a comp...
he observation of molecules in the interstellar medium gives information on the physic of the format...
Context. The inner regions of the envelopes surrounding young protostars are characterized by a comp...
Context. Classical hot cores are rich in molecular emission, and they show a high abundance of compl...
Context. Classical hot cores are rich in molecular emission, and they show a high abundance of compl...
International audienceWe present a suite of Atacama Large Millimeter Array (ALMA) interferometric mo...
The importance of ALMA to quantitatively trace the evolution of gas and dust from interstellar clou...
We present high angular resolution (∼ 0.3′′) submillimeter continuum (0.85 mm) and line observations...
International audienceWe present a suite of Atacama Large Millimeter Array (ALMA) interferometric mo...
The importance of ALMA to quantitatively trace the evolution of gas and dust from interstellar clou...