We present the initial results of a 3-mm spectral-line survey towards 83 methanol maser-selected massive star-forming regions. Here, we report observations of the J Combining double low line 5-4 and 6-5 rotational transitions of methyl cyanide (CH3CN) and the J Combining double low line 1-0 transition of HCO+ and H13CO+. CH 3CN emission is detected in 58 sources (70 per cent of our sample). We estimate the temperature and column density for 37 of these using the rotational diagram (RD) method. The temperatures we derive range from 28-166 K, and are lower than previously reported temperatures, derived from higher J transitions. We find that CH3CN is brighter and more commonly detected towards ultracompact H ii (UCH ii) regions than towards i...
We present spectral line mapping observations towards four massive star-forming regions Cepheus A, D...
We present 247 GHz molecular line observations of methanol (CH3OH) toward 16 massive star-forming re...
Context. Candidate high-mass star-forming regions can be identified through the occurrence of 6.7 GH...
We present the initial results of a 3-mm spectral-line survey towards 83 methanol maser-selected mas...
We present the initial results of a 3-mm spectral-line survey towards 83 methanol maserselected mass...
We present the results of a targeted 3-mm spectral line survey towards the eighty-three 6.67GHz meth...
We present the results of a targeted 3-mm spectral line survey towards the eighty-three 6.67GHz meth...
In recent years the 6.67 GHz masing transition of CH3OH has proven to be a superior tracer of massiv...
We present the results of a search for methanol maser and thermal lines in 11 transitions in the ran...
We present results of a survey of methyl cyanide (CH3CN) J=12–11 toward 56 sources, including 35 Ext...
Aims.We characterize the molecular environment of candidate massive young stellar objects (MYSOs) si...
We present high angular resolution data on Class I and Class II methanol masers, together with other...
Aims. The TOPGot project studies a sample of 86 high-mass star-forming regions in different evolutio...
To understand the origin of the CH3OH maser emission, we map the distribution and excitation of the ...
Aims. The TOPGöt project studies a sample of 86 high-mass star-forming regions in different evolutio...
We present spectral line mapping observations towards four massive star-forming regions Cepheus A, D...
We present 247 GHz molecular line observations of methanol (CH3OH) toward 16 massive star-forming re...
Context. Candidate high-mass star-forming regions can be identified through the occurrence of 6.7 GH...
We present the initial results of a 3-mm spectral-line survey towards 83 methanol maser-selected mas...
We present the initial results of a 3-mm spectral-line survey towards 83 methanol maserselected mass...
We present the results of a targeted 3-mm spectral line survey towards the eighty-three 6.67GHz meth...
We present the results of a targeted 3-mm spectral line survey towards the eighty-three 6.67GHz meth...
In recent years the 6.67 GHz masing transition of CH3OH has proven to be a superior tracer of massiv...
We present the results of a search for methanol maser and thermal lines in 11 transitions in the ran...
We present results of a survey of methyl cyanide (CH3CN) J=12–11 toward 56 sources, including 35 Ext...
Aims.We characterize the molecular environment of candidate massive young stellar objects (MYSOs) si...
We present high angular resolution data on Class I and Class II methanol masers, together with other...
Aims. The TOPGot project studies a sample of 86 high-mass star-forming regions in different evolutio...
To understand the origin of the CH3OH maser emission, we map the distribution and excitation of the ...
Aims. The TOPGöt project studies a sample of 86 high-mass star-forming regions in different evolutio...
We present spectral line mapping observations towards four massive star-forming regions Cepheus A, D...
We present 247 GHz molecular line observations of methanol (CH3OH) toward 16 massive star-forming re...
Context. Candidate high-mass star-forming regions can be identified through the occurrence of 6.7 GH...