We present ammonia maps of portions of the W3 and Perseus molecular clouds in order to compare gas emission with submillimetre continuum thermal emission which are commonly used to trace the same mass component in star-forming regions, often under the assumption of local thermodynamic equilibrium (LTE). The Perseus and W3 star-forming regions are found to have significantly different physical characteristics consistent with the difference in size scales traced by our observations. Accounting for the distance of the W3 region does not fully reconcile these differences, suggesting that there may be an underlying difference in the structure of the two regions. Peak positions of submillimetre and ammonia emission do not correlate strongly. Al...
We use Atacama Large Millimeter Array (ALMA) observations of four submillimeter galaxies (SMGs) at z...
We present an overview of data available for the Ophiuchus and Perseus molecular clouds from Phase I...
Context. The circumstellar ammonia (NH3) chemistry in evolved stars is poorly understood. Previous o...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We present a new, approximate method of calculating the column density of ammonia in mapping observa...
We explore the relationship between gas and dust in a massive star-forming region by comparing the p...
We present the results of ammonia observations towards 66 massive star forming regions identified by...
© ESO, 2015. Aims. We aim at determining the spatial distribution of the gas and dust in star-formin...
The Planck Catalogue of Galactic Cold Clumps provides an all-sky sample of potential star-forming re...
We use the COMPLETE Survey's observations of the Perseus star-forming region to assess and intercomp...
We explore the relationship between gas and dust in massive star-forming regions by comparing the ph...
We present the results from NH3 mapping observations towards 34 regions identified by the Red MSX So...
We present NH_3(1,1) and (2,2) observations of MBM 12, the closest known molecular cloud (65-pc dist...
We present the results from NH3 mapping observations towards 34 regions identified by the Red MSX So...
Stars are formed in dense regions within molecular clouds. The different phenomena associated with t...
We use Atacama Large Millimeter Array (ALMA) observations of four submillimeter galaxies (SMGs) at z...
We present an overview of data available for the Ophiuchus and Perseus molecular clouds from Phase I...
Context. The circumstellar ammonia (NH3) chemistry in evolved stars is poorly understood. Previous o...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We present a new, approximate method of calculating the column density of ammonia in mapping observa...
We explore the relationship between gas and dust in a massive star-forming region by comparing the p...
We present the results of ammonia observations towards 66 massive star forming regions identified by...
© ESO, 2015. Aims. We aim at determining the spatial distribution of the gas and dust in star-formin...
The Planck Catalogue of Galactic Cold Clumps provides an all-sky sample of potential star-forming re...
We use the COMPLETE Survey's observations of the Perseus star-forming region to assess and intercomp...
We explore the relationship between gas and dust in massive star-forming regions by comparing the ph...
We present the results from NH3 mapping observations towards 34 regions identified by the Red MSX So...
We present NH_3(1,1) and (2,2) observations of MBM 12, the closest known molecular cloud (65-pc dist...
We present the results from NH3 mapping observations towards 34 regions identified by the Red MSX So...
Stars are formed in dense regions within molecular clouds. The different phenomena associated with t...
We use Atacama Large Millimeter Array (ALMA) observations of four submillimeter galaxies (SMGs) at z...
We present an overview of data available for the Ophiuchus and Perseus molecular clouds from Phase I...
Context. The circumstellar ammonia (NH3) chemistry in evolved stars is poorly understood. Previous o...