A multi-wavelength view of the Galactic center dust ridge reveals little star formation
arXiv:1211.0455 · doi:10.1051/0004-6361/201219182
Abstract
The Galactic center dust ridge consists of a narrow string of massive condensations identified in submillimeter dust continuum emission. To determine whether new high-mass stars are forming in this region, we performed new observations at 870 m with the Atacama Pathfinder Experiment telescope and at 8.4 GHz with the Very Large Array. We complement our data with recent maser and mid-infrared results. The ridge's clouds are dark at mid-infrared wavelengths, indicating the presence of cold, high column density material. In combination with existing temperature measurements in the dust ridge, we determined the masses of the largest clouds. The results show that the dust ridge contains a very massive reservoir of molecular material. We find five radio sources at 8.4 GHz in the general dust ridge vicinity but outside of the dust ridge clouds, which are probably all excited by massive young stars, whose properties we constrain. Our observations exclude the existence of zero age main sequence stars with spectral types earlier than B0.5 within the dust ridge clouds. The only indication of ongoing high-mass star formation inside the clouds are class II methanol masers that are found in two of the clouds. Except for a weak water maser, found in previous observations, no signs of star formation are detected in the massive cloud M0.25+0.012.
9 pages, 5 figures, accepted for publication in A&A
References in corpus (2)
Cited by in corpus (23)
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- 'The Brick' is not a brick: A comprehensive study of the structure and dynamics of the Central Molecular Zone cloud G0.253+0.016
- The Survey of Water and Ammonia in the Galactic Center (SWAG): Molecular Cloud Evolution in the Central Molecular Zone
- The dynamical evolution of molecular clouds near the Galactic Centre - II. Spatial structure and kinematics of simulated clouds
- G0.253+0.016: A centrally condensed, high-mass protocluster
- The dynamics and star-forming potential of the massive Galactic centre cloud G0.253+0.016
- Tracing the Conversion of Gas into Stars in Young Massive Cluster Progenitors
- Abundant Methanol Masers but no New Evidence for Star Formation in GCM0.253+0.016
- Star formation in a high-pressure environment: An SMA view of the Galactic centre dust ridge
- ALMA Observations of Massive Clouds in the Central Molecular Zone: Jeans Fragmentation and Cluster Formation
- Star formation in 'the Brick': ALMA reveals an active proto-cluster in the Galactic centre cloud G0.253+0.016
- The Life Cycle of the Central Molecular Zone. II: Distribution of atomic and molecular gas tracers
- Constraining the population of isolated massive stars within the Central Molecular Zone
- A global view on star formation: The GLOSTAR Galactic plane survey IV. Radio continuum detections of young stellar objects in the Galactic Centre region
- ATLASGAL -- Star forming efficiencies and the Galactic star formation rate
- A wind-blown bubble in the Central Molecular Zone cloud G0.253+0.016
- Sagittarius B1 -- A Patchwork of H II Regions and PhotoDissociation Regions
- Understanding the Star Formation Efficiency in Dense Gas: Initial Results from the CAFFEINE Survey with ArTéMiS
- JWST reveals widespread CO ice and gas absorption in the Galactic Center cloud G0.253+0.016
- The initial conditions for young massive cluster formation in the Galactic Centre: convergence of large-scale gas flows
- Dual-band Unified Exploration of Three CMZ Clouds (DUET). Cloud-wide census of continuum sources showing low spectral indices
- Gas Dynamics in the Central Molecular Zone and its connection with the Galactic Bar
- YSO search toward the boundary of the Central Molecular Zone with near-infrared polarimetry