Constraining Spatial Densities of Early Ice Formation in Small Dense Molecular Cores from Extinction Maps
arXiv:2106.08333 · doi:10.3847/1538-4357/ac0ae8
Abstract
Tracing dust in small dense molecular cores is a powerful tool to study the conditions required for ices to form during the pre-stellar phase. To study these environments, five molecular cores were observed: three with ongoing low-mass star formation (B59, B335, and L483) and two starless collapsing cores (L63 and L694-2). Deep images were taken in the infrared JHK bands with the United Kingdom Infrared Telescope (UKIRT) WFCAM (Wide Field Camera) instrument and IRAC channels 1 and 2 on the Spitzer Space Telescope. These five photometric bands were used to calculate extinction along the line of sight toward background stars. After smoothing the data, we produced high spatial resolution extinction maps (13-29") . The maps were then projected into the third dimension using the AVIATOR algorithm implementing the inverse Abel transform. The volume densities of the total hydrogen were measured along lines of sight where ices (HO, CO, and CHOH) have previously been detected. We find that lines of sight with pure CHOH or a mixture of CHOH with CO have maximum volume densities above 1.010 cm. These densities are only reached within a small fraction of each of the cores (0.3-2.1%). CHOH presence may indicate the onset of complex organic molecule formation within dense cores and thus we can constrain the region where this onset can begin. The maximum volume densities toward star-forming cores in our sample (1.2-1.710 cm) are higher than those toward starless cores (3.5-9.510 cm).
21 pages, 4 figures, Accepted for publication by ApJ
References in corpus (13)
- The WFCAM Science Archive
- The UKIRT Wide Field Camera ZYJHK Photometric System: Calibration from 2MASS
- 2MASS wide field extinction maps - I. The Pipe nebula
- NICEST, a near-infrared color excess method tailored for small-scale structures
- Formation of Glycerol through Hydrogenation of CO ice under Prestellar Core Conditions
- The Earliest Phases of Star formation observed with Herschel (EPoS): The dust temperature and density distributions of B68
- L483: Warm Carbon-Chain Chemistry Source Harboring Hot Corino Activity
- The Spitzer c2d Survey of Nearby Dense Cores: IV. Revealing the Embedded Cluster in B59
- Spitzer Observations of Bok Globule B335: Isolated Star Formation Efficiency and Cloud Structure
- Prestellar core modeling in the presence of a filament - The dense heart of L1689B
- A Photometrically and Morphologically Variable Infrared Nebula in L483
- AVIATOR: Morphological object reconstruction in 3D. An application to dense cores
- Optimal extinction measurements - I. Single-object extinction inference