H2O Maser Emission in Circumstellar Envelopes around AGB Stars: Physical Conditions in Gas-Dust Clouds
arXiv:1309.7547 · doi:10.1134/S106377371309003X
Abstract
The pumping of 22.2-GHz HO masers in the circumstellar envelopes of asymptotic giant branch stars has been simulated numerically. The physical parameters adopted in the calculations correspond to those of the circumstellar envelope around IK Tau. The one-dimensional plane-parallel structure of the gas-dust cloud is considered. The statistical equilibrium equations for the HO level populations and the thermal balance equations for the gas-dust cloud are solved self-consistently. The calculations take into account 410 rotational levels belonging to the five lowest vibrational levels of HO. The stellar radiation field is shown to play an important role in the thermal balance of the gas-dust cloud due to the absorption of emission in rotational-vibrational HO lines. The dependence of the gain in the 22.2-GHz maser line on the gas density and HO number density in the gas-dust cloud is investigated. Gas densities close to the mean density of the stellar wind, 10 cm, and a high relative HO abundance, more than 10, have been found to be the most likely physical conditions in maser sources.
16 pages, 4 figures
References in corpus (6)
- A close halo of large transparent grains around extreme red giant stars
- Probing the mass-loss history of AGB and red supergiant stars from CO rotational line profiles I. Theoretical model -- Mass-loss history unravelled in VY CMa
- Quasi-classical rate coefficient calculations for the rotational (de)excitation of H2O by H2
- The wind of the M-type AGB star RT Virginis probed by VLTI/MIDI
- Late Stages of Stellar Evolution - Herschel's contributions
- H_2^{16}O and H_2^{18}O Maser Emission from Gas-Dust Clouds
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- HO Maser Pumping: The Effect of Quasi-Resonance Energy Transfer in Collisions between H and HO Molecules
- Collisional Pumping of HO and CHOH Masers in C-Type Shock Waves