Chemical evolution of Red MSX Sources in the southern sky
arXiv:1701.02068 · doi:10.3847/1538-4357/833/2/248
Abstract
Red Midcourse Space Experiment (MSX) Sources (RMSs) are regarded as excellent candidates of massive starforming regions. In order to characterize the chemical properties of massive star formation, we made a systematic study of 87 RMSs in the southern sky, using archival data taken from the Atacama Pathfinder Experiment Telescope Large Area Survey of the Galaxy (ATLASGAL), the Australia Telescope Compact Array, and the Millimetre Astronomy Legacy Team Survey at 90 GHz (MALT90). According to previous multiwavelength observations, our sample could be divided into two groups: massive young stellar objects and H II regions. Combined with the MALT90 data, we calculated the column densities of N2H+, C2H, HC3N, and HNC and found that they are not much different from previous studies made in other massive star-forming regions. However, their abundances are relatively low compared to infrared dark clouds (IRDCs). The abundances of N2H+ and HNC in our sample are at least 1 mag lower than those found in IRDCs, indicating chemical depletions in the relatively hot gas. Besides, the fractional abundances of N2H+, C2H, and HC3N seem to decrease as a function of their Lyman continuum fluxes (NL), indicating that these molecules could be destroyed by UV photons when H II regions have formed inside. We also find that the C2H abundance decreases faster than HC3N with respect to NL. The abundance of HNC has a tight correlation with that of N2H+, indicating that it may be also preferentially formed in cold gas. We regard our RMSs as being in a relatively late evolutionary stage of massive star formation.
References in corpus (8)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- On the frequency of N2H+ and N2D+
- The RMS Survey: Radio observations of candidate massive YSOs in the southern hemisphere
- Ethynyl (C2H) in massive star formation: Tracing the initial conditions?
- G0.253+0.016: A centrally condensed, high-mass protocluster
- The RMS Survey: CO observations of candidate massive YSOs in the northern Galactic plane
- Search for ionized jets towards high-mass young stellar objects
- Physical and chemical conditions in methanol maser selected hot-cores and UCHII regions
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- Infrared dust bubble CS51 and its interaction with the surrounding interstellar medium
- Chemical evolution of N2H+ in six massive star-forming regions
- Chemical Evolution of HC3N in Dense Molecular Clouds
- Cyanopolyyne line survey towards high-mass star-forming regions with TMRT