Coupling the dynamics and the molecular chemistry in the Galactic center
arXiv:astro-ph/0603851 · doi:10.1051/0004-6361:20064813
Abstract
The physical conditions of the Galactic center (GC) clouds moving with non-circular velocities are not well-known. We have studied the physical conditions of these clouds with the aim of better understanding the origin of the outstanding physical conditions of the GC molecular gas and the possible effect of the large scale dynamics on these physical conditions.Using published CO(1-0) data, we have selected a set of clouds belonging to all the kinematical components seen in the longitude-velocity diagram of the GC. We have done a survey of dense gas in all the components using the J=2-1 lines of CS and SiO as tracers of high density gas and shock chemistry. We have detected CS and SiO emission in all the kinematical components. The gas density and the SiO abundance of the clouds in non-circular orbits are similar those in the nuclear ring (GCR). Therefore, in all the kinematical components there are dense clouds that can withstand the tidal shear. However, there is no evidence of star formation outside the GCR. The high relative velocity and shear expected in the dust-lanes along the bar major axis could inhibit the star formation process, as observed in other galaxies. The high SiO abundances derived in the non-circular velocity clouds are likely due to the large-scale shocks that created the dust lanes
One figure as an independent PDF file. Accepted by A&A
Cited by in corpus (17)
- Gas flow models in the Milky Way embedded bars
- The Bolocam Galactic Plane Survey IV: 1.1 and 0.35 mm Dust Continuum Emission in the Galactic Center Region
- Mass inflow rate into the Central Molecular Zone: observational determination and evidence of episodic accretion
- Nuclear Bar Catalyzed Star Formation: 13^CO, C18^O and Molecular Gas Properties in the Nucleus of Maffei 2
- CHIMPS2: Survey description and CO emission in the Galactic Centre
- The large scale dust lanes of the Galactic bar
- The Atacama Cosmology Telescope: Microwave Intensity and Polarization Maps of the Galactic Center
- Multiplicity of nuclear dust lanes and dust lane shocks in the Milky Way bar
- The first detection of SiC in the interstellar medium
- Milky Way demographics with the VVV Survey III. Evidence for a Great Dark Lane in the 157 Million Star Bulge Color-Magnitude Diagram
- Absorption Filaments Towards the Massive Clump G0.253+0.016
- The Central 300 pc of the Galaxy probed by infrared spectra of H3+ and CO: II. Expansion and morphology of the warm diffuse gas
- ALMA hints at the existence of an unseen reservoir of diffuse molecular gas in the Galactic bulge
- Living on the edge of the Central Molecular Zone: G1.3 is the more likely candidate for gas accretion into the CMZ
- Revealing Gas Inflows towards the Galactic Central Molecular Zone
- Gas Transfer Between the Inner 3-kpc Disk and the Galactic Central Molecular Zone
- Discovery of a giant molecular loop in the central region of NGC 253