Probing the physical and chemical structure of the CS core in LDN 673. Multitransitional and continuum observations
arXiv:1206.2837 · doi:10.1111/j.1365-2966.2012.21521.x
Abstract
High-angular resolution observations of dense molecular cores show that these cores can be clumpier at smaller scales, and that some of these clumps can also be unbound or transient. The use of chemical models of the evolution of the molecular gas provides a way to probe the physical properties of the clouds. We study the properties of the clump and inter-clump medium in the starless CS core in LDN 673 by carrying out a molecular line survey with the IRAM 30-m telescope toward two clumps and two inter-clump positions. We also observed the 1.2-mm continuum with the MAMBO-II bolometer at IRAM. The dust continuum map shows four condensations, three of them centrally peaked, coinciding with previously identified sub-millimetre sources. We confirm that the denser clump of the region, \cmt, is also the more chemically evolved, and it could still undergo further fragmentation. The inter-clump medium positions are denser than previously expected, likely --1\cmt\ due to contamination, and are chemically young, similar to the gas in the lower density clump position. We argue that the density contrast between these positions and their general young chemical age would support the existence of transient clumps in the lower density material of the core. We were also able to find reasonable fits of the observationally derived chemical abundances to models of the chemistry of transient clumps.
15 pages, 9 figures, 13 tables. Accepted by MNRAS
References in corpus (9)
- Theory of Star Formation
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- 2MASS wide field extinction maps - I. The Pipe nebula
- On the internal structure of starless cores. II. A molecular survey of L1498 and L1517B
- The Different Structures of the Two Classes of Starless Cores
- The nature of the dense core population in the Pipe Nebula: A survey of NH3, CCS, and HC5N molecular line emission
- The structure of molecular clouds and the universality of the clump mass function
- The nature of the dense core population in the pipe nebula: core and cloud kinematics from C18O observations
- The effect of ambipolar resistivity on the formation of dense cores