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Infrared Characteristics of Associated Sources of Water Masers
作者姓名:Jarken  Esimbek
作者单位:Department of
基金项目:Supported by the National Natural Science Foundation of China.
摘    要:We present an analysis of the infrared properties of 1417 water masers collected from the literature published by December 2004. The associated infrared sources of the water masers were identified with IRAS and MSX (Midcourse Space Experiment) catalogues. There are 1252 water masers associated with IRAS sources within 1', which include 700 interstellar and 552 stellar sources. For 382 sources, the IRAS counterpart identification and the maser classification are new. We found the colors of the interstellar maser sources are much redder than those of the stellar ones at IRAS wavelength bands; 99% of the interstellar maser sources are above black body line, while 95% of the stellar masers are below. The distribution difference of the two kinds of masers shown in the color-color diagram is due to their different optical depths and temperature distributions of dust regions. There are 743 water masers with MSX counterparts, of which 552 are interstellar masers and 191 are stellar masers. MSX colors of the associated sources of water masers are here analyzed for the first time. The color differences among the MSX bands are small and the interstellar masers are redder than the stellar masers. There is a correlation between the intensity of the stellar water maser emission and that of the 12μm and 25μm emissions, while there is no correlation between the water maser emission and the 8 μm emission. The infrared intensity increases with increasing wavelength for the interstellar masers, while it is the opposite for stellar masers. These results may provide clues for the pumping of water maser and for the properties of the two kinds of maser emission regions.

关 键 词:微波激射器  天文运动学  星体  红外线

Infrared Characteristics of Associated Sources of Water Masers
Jarken Esimbek.Infrared Characteristics of Associated Sources of Water Masers[J].Chinese Journal of Astronomy and Astrophysics,2005,5(6):587-594.
Authors:Jarken Esimbek Yue-Fang Wu Jun-Zhi Wang
Institution:[1]Department of Astronomy, Peking University, Beijing 100871 [2]National Astronomical Observatories/Urumqi Observatory, Chinese Academy of Sciences,Urumqi 830011
Abstract:
Keywords:masers - ISM: kinematics and dynamics-stars: mass loss
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