Publication | Closed Access
Statistical Properties of 6.7 GHz Methanol Maser Sources
24
Citations
27
References
2003
Year
PhotometryMillimeter Wave TechnologyEngineeringPhysicsMeasurementNatural SciencesMaser SourcesAstrophysical PlasmaMicrowave MeasurementInstrumentationSynchrotron RadiationStatistical PropertiesMicrowave EngineeringHigh-energy AstrophysicsMaser EmissionAstrophysics
We present a statistical analysis of 482 6.7 GHz methanol maser sources from the available literature, on their maser emission and the characteristics of their associated infrared sources. On the color-color diagram, more than 70% of the objects fall within a very small region (0.57 ≤ [25-12] ≤ 1.30 and 1.30 ≤ [60-12] ≤ 2.50). This suggests that 6.7 GHz methanol maser emission occurs only within a very short evolutionary phase during the earliest stage of star formation. The velocity ranges of the masers belong to two main groups: one from 1 to 10 km s−1, and one from about 11 to 20 km s−1. These velocity ranges indicate that the masers are probably associated with both disks and outflows. The correlations between the maser and infrared flux densities, and between the maser and infrared luminosities, suggest that far-infrared radiation is a possible pumping mechanism for the masers which most probably originate from some outer molecular envelopes or disks.
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