Aims. The aim is to investigate the use of 183 GHz H2O masers for characterization of the physical conditions and mass loss process in the circumstellar envelopes of evolved stars. Methods. We used APEX SEPIA Band 5 (an ALMA Band 5 receiver on the APEX telescope) to observe the 183 GHz H2O line towards two red supergiant (RSG) and three asymptotic giant branch (AGB) stars. Simultaneously, we observed the J = 4−3 line for 28SiO v = 0, 1, 2 and 3, and for 29SiO v = 0 and 1. We compared the results with simulations and radiative transfer models for H2O and SiO, and examined data for the individual linear orthogonal polarizations. Results. We detected the 183 GHz H2O line towards all the stars with peak flux densities >100 Jy, i...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context.Maser emission from the H2O molecule probes the warm, inner circumstellar envelopes of oxyge...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...
Aims. The aim is to investigate the use of 183 GHz H2O masers for characterization of the physical c...
International audienceWe investigate the use of 183 GHz H2O masers for characterization of the physi...
International audienceWe investigate the use of 183 GHz H2O masers for characterization of the physi...
We investigate the use of 183 GHz H2O masers for characterization of the physical conditions and mas...
Aims. The aim is to investigate the use of 183 GHz H2O masers for characterization of the physical c...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Aims. The aim of this work is to search Seyfert 2 galaxy NGC 4945, a well-known 22 GHz water megamas...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Several rotational transitions of ortho- and para-water have been identified toward evolved...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context.Maser emission from the H2O molecule probes the warm, inner circumstellar envelopes of oxyge...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...
Aims. The aim is to investigate the use of 183 GHz H2O masers for characterization of the physical c...
International audienceWe investigate the use of 183 GHz H2O masers for characterization of the physi...
International audienceWe investigate the use of 183 GHz H2O masers for characterization of the physi...
We investigate the use of 183 GHz H2O masers for characterization of the physical conditions and mas...
Aims. The aim is to investigate the use of 183 GHz H2O masers for characterization of the physical c...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Aims. The aim of this work is to search Seyfert 2 galaxy NGC 4945, a well-known 22 GHz water megamas...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context. Several rotational transitions of ortho- and para-water have been identified toward evolved...
Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Addit...
Context.Maser emission from the H2O molecule probes the warm, inner circumstellar envelopes of oxyge...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...