Context. Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional observations, including polarisation studies and simultaneous observation of different maser transitions may ultimately lead to greater insight.Aims. We have aimed to elucidate the nature and structure of the VY CMa water vapour masers in part by observationally testing a theoretical prediction of the relative strengths of the 620.701 GHz and the 22.235 GHz maser components of ortho H2O.Methods. In its high-resolution mode (HRS) the Herschel Heterodyne Instrument for the Far Infrared (HIFI) offers a frequency resolution of 0.125 MHz, corresponding to a line-of-sight velocity of 0.06 km s(-1), which we employed to obtain the strength and...
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...
Context. The high intensities and narrow bandwidths exhibited by some astronomical masers make them ...
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...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...
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...
Contains fulltext : 84177.pdf (preprint version ) (Open Access
The aim of this thesis is to perform observational tests of SiO maser polarisation and excitation mo...
We present results of Very Long Baseline Array (VLBA) polarimetric 22 GHz H2O maser observations of ...
We present results of Very Long Baseline Array (VLBA) polarimetric 22 GHz H2O maser observations of ...
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...
Context. The high intensities and narrow bandwidths exhibited by some astronomical masers make them ...
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...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...
Water vapour maser emission from evolved oxygen-rich stars remains poorly understood. Additional obs...
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...
Contains fulltext : 84177.pdf (preprint version ) (Open Access
The aim of this thesis is to perform observational tests of SiO maser polarisation and excitation mo...
We present results of Very Long Baseline Array (VLBA) polarimetric 22 GHz H2O maser observations of ...
We present results of Very Long Baseline Array (VLBA) polarimetric 22 GHz H2O maser observations of ...
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...
Context. The high intensities and narrow bandwidths exhibited by some astronomical masers make them ...