Context: Formaldehyde (H2CO) is a reliable tracer to accurately measure the physical parameters of dense gas in star-forming regions. Aim: We aim to determine directly the kinetic temperature and spatial density with formaldehyde for the ~100 brightest ATLASGAL-selected clumps (the TOP100 sample) at 870 ?m representing various evolutionary stages of high-mass star formation. Methods: Ten transitions (J = 3–2 and 4–3) of ortho- and para-H2CO near 211, 218, 225, and 291 GHz were observed with the Atacama Pathfinder EXperiment (APEX) 12 m telescope. Results: Using non-LTE models with RADEX, we derived the gas kinetic temperature and spatial density with the measured para-H2CO 321–220/303–202, 422–321/404–303, and 404–303/303–202 ratio...
Formaldehyde (H2CO) is an important precursor to organics like methanol (CH3OH). It is important to ...
Here we report observations of the two lowest inversion transitions of ammonia (NH3) with the 70-m T...
Accurate techniques that allow for the derivation of the spatial density in star formation regions a...
Context. Formaldehyde (H2CO) is a reliable tracer to accurately measure the physical parameters of d...
Context. For a general understanding of the physics involved in the star formation process, measurem...
We mapped the kinetic temperature structure of two massive star-forming regions, N113 and N159W, in ...
We mapped the kinetic temperature structure of two massive star-forming regions, N113 and N159W, in ...
Context: Observational identification of a solid evolutionary sequence for high-mass star-forming re...
(Abridged) Aims: We aim to use the progressive heating of the gas caused by the feedback of high-ma...
Context. The kinetic temperature of molecular clouds is a fundamental physical parameter affecting s...
We present a detailed analysis describing the utility of the formaldehyde (H2CO) molecule in the der...
We mapped the kinetic temperature structure of two massive star-forming regions, N113 and N159W, in ...
With a goal toward deriving the physical conditions in external galaxies, we have conducted a survey...
Formaldehyde (H2CO) is an important precursor to organics like methanol (CH3OH). It is important to ...
Here we report observations of the two lowest inversion transitions of ammonia (NH3) with the 70-m T...
Accurate techniques that allow for the derivation of the spatial density in star formation regions a...
Context. Formaldehyde (H2CO) is a reliable tracer to accurately measure the physical parameters of d...
Context. For a general understanding of the physics involved in the star formation process, measurem...
We mapped the kinetic temperature structure of two massive star-forming regions, N113 and N159W, in ...
We mapped the kinetic temperature structure of two massive star-forming regions, N113 and N159W, in ...
Context: Observational identification of a solid evolutionary sequence for high-mass star-forming re...
(Abridged) Aims: We aim to use the progressive heating of the gas caused by the feedback of high-ma...
Context. The kinetic temperature of molecular clouds is a fundamental physical parameter affecting s...
We present a detailed analysis describing the utility of the formaldehyde (H2CO) molecule in the der...
We mapped the kinetic temperature structure of two massive star-forming regions, N113 and N159W, in ...
With a goal toward deriving the physical conditions in external galaxies, we have conducted a survey...
Formaldehyde (H2CO) is an important precursor to organics like methanol (CH3OH). It is important to ...
Here we report observations of the two lowest inversion transitions of ammonia (NH3) with the 70-m T...
Accurate techniques that allow for the derivation of the spatial density in star formation regions a...