12CO emission from EP Aqr: Another example of an axi-symmetric AGB wind?
P. T. Nhung, D. T. Hoai, J. M. Winters, T. Le Bertre, P. N. Diep, N., T. Phuong, N. T. Thao, P. Tuan-Anh, P. Darriulat

TL;DR
This study models the CO emission from the AGB star EP Aqr, proposing a bipolar outflow with latitude-dependent velocity and density, revealing complex wind structures and temperature variations aligned with the star's axis.
Contribution
It introduces a bipolar outflow model with latitude-dependent expansion velocities and density enhancements, improving understanding of the star's circumstellar wind structure.
Findings
Bipolar outflow model fits observed CO emission data.
Temperature varies with latitude, steeper at the poles.
Density enhancement observed in the northern hemisphere.
Abstract
The CO(1-0) and (2-1) emission of the circumstellar envelope of the AGB star EP Aqr has been observed using the IRAM PdBI and the IRAM 30-m telescope. The line profiles reveal the presence of two distinct components centered on the star velocity, a broad component extending up to ~10 km/s and a narrow component indicating an expansion velocity of ~2 km/s. An early analysis of these data was performed under the assumption of isotropic winds. The present study revisits this interpretation by assuming instead a bipolar outflow nearly aligned with the line of sight. A satisfactory description of the observed flux densities is obtained with a radial expansion velocity increasing from ~2 km/s at the equator to ~10 km/s near the poles. The angular aperture of the bipolar outflow is ~45 deg with respect to the star axis, which makes an angle of ~13 deg with the line of sight. A detailed study…
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