Massive Quiescent Cores in Orion: VI. The Internal Structures and a Candidate of Transiting Core in NGC 2024 Filament
arXiv:1604.08415 · doi:10.3847/0004-637X/824/1/52
Abstract
We present a multi-wavelength observational study of the NGC 2024 filament using infrared to sub-millimeter continuum and the NH and inversion transitions centered on FIR-3, the most massive core therein. FIR-3 is found to have no significant infrared point sources in the Spitzer/IRAC bands. But the NH kinetic temperature map shows a peak value at the core center with K which is significantly higher than the surrounding level ( K). Such internal heating signature without an infrared source suggests an ongoing core collapse possibly at a transition stage from first hydrostatic core (FHSC) to protostar. The eight dense cores in the filament have dust temperatures between 17.5 and 22 K. They are much cooler than the hot ridge ( K) around the central heating star IRS-2b. Comparison with a dust heating model suggests that the filament should have a distance of pc from IRS-2b. This value is much larger than the spatial extent of the hot ridge, suggesting that the filament is spatially separated from the hot region along the line of sight.
20 pages, 7 figures, 6 tables. Accepted to ApJ
References in corpus (16)
- The distance to the Orion Nebula
- An Ammonia Spectral Atlas of Dense Cores in Perseus
- A Parallactic Distance of 389 +24/-21 parsecs to the Orion Nebula Cluster from Very Long Baseline Array Observations
- The first Hi-GAL observations of the outer Galaxy: a look to star formation in the third Galactic quadrant in the longitude range 216.5 < l < 225.5
- Exposed Long-lifetime First-core: A New Model of First Cores Based on Radiation Hydrodynamics
- The evolutionary state of the southern dense core Cha-MMS1
- Revealing H2D+ depletion and compact structure in starless and protostellar cores with ALMA
- Formation and Collapse of Quiescent Cloud Cores Induced by Dynamic Compressions
- Prestellar Core Formation, Evolution, and Accretion from Gravitational Fragmentation in Turbulent Converging Flows
- Massive Quiescent Cores in Orion. -- II. Core Mass Function
- Dichotomy in the Dynamical Status of Massive Cores in Orion
- Hyper: Hybrid Photometry and Extraction Routine
- The YSO Population in the Vela-D Molecular Cloud
- VLA and GBT Observations of Orion B (NGC 2024, W12) : Photo-dissociation Region Properties and Magnetic field
- Radio Observations of the Star Formation Activities in the NGC 2024 FIR 4 Region
- Massive Quiescent Cores in Orion: V. The Physical Structures on Sub-Jeans Scale and the Chemical Properties in Two Extremely Dense Cores
Cited by in corpus (5)
- Protoplanetary disk masses in NGC 2024: Evidence for two populations
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars V. A Characterization of Protostellar Multiplicity
- Remarkable analytic relations among greybody parameters
- HCN emission from translucent gas and UV-illuminated cloud edges revealed by wide-field IRAM 30m maps of Orion B GMC: Revisiting its role as tracer of the dense gas reservoir for star formation
- The APEX Large CO Heterodyne Orion Legacy Survey (ALCOHOLS). I. Survey overview