The Integral Field View of the Orion Nebula
arXiv:1310.5631 · doi:10.1155/2014/279320
Abstract
This paper reviews the major advances achieved in the Orion Nebula through the use of integral field spectroscopy (IFS). Since the early work of Vasconcelos and collaborators in 2005, this technique has facilitated the investigation of global properties of the nebula and its morphology, providing new clues to better constrain its 3D structure. IFS has led to the discovery of shock-heated zones at the leading working surfaces of prominent Herbig-Haro objects as well as the first attempt to determine the chemical composition of Orion protoplanetary disks, also known as proplyds. The analysis of these morphologies using IFS has given us new insights into the abundance discrepancy problem, a long-standing and unresolved issue that casts doubt on the reliability of current methods used for the determination of metallicities in the universe from the analysis of H II regions. Results imply that high-density clumps and high-velocity flows may play an active role in the production of such discrepancies. Future investigations based on the large-scale IFS mosaic of Orion will be very valuable for exploring how the integrated effect of small-scale structures may have impact at larger scales in the framework of star-forming regions.
15 pages, 8 figures. Review paper published in Advances in Astronomy as part of the special issue "Metals in 3D: A Cosmic View from Integral Field Spectroscopy". More information: http://dx.doi.org/10.1155/2014/279320
References in corpus (17)
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- Resolving the electron temperature discrepancies in HII Regions and Planetary Nebulae: kappa-distributed electrons
- Keck HIRES Spectroscopy of Extragalactic HII Regions: C and O Abundances from Recombination Lines
- Chemical abundances of 451 stars from the HARPS GTO planet search program: Thin disc, thick disc, and planets
- On the abundance discrepancy problem in HII regions
- The localized chemical pollution in NGC 5253 revisited: Results from deep echelle spectrophotometry
- Properties of the ionized gas in HH202. II: Results from echelle spectrophotometry with UVES
- The three dimensional dynamic structure of the inner Orion Nebula
- Enrichment of the ISM by metal-rich droplets and the abundance bias in HII regions
- PPAK Integral Field Spectroscopy survey of the Orion Nebula: Data Release
- Silicon Monoxide Observations Reveal a Cluster of Hidden Compact Outflows in the OMC1 South Region
- High Velocity Features in the Orion Nebula
- Large Scale Flows from Orion-South
- Ionized gas diagnostics from protoplanetary discs in the Orion Nebula and the abundance discrepancy problem
- Properties of the ionized gas in HH202. I: Results from integral field spectroscopy with PMAS
- A photoionized Herbig-Haro object in the Orion nebula
- Chemical abundances in Orion protoplanetary discs: integral field spectroscopy and photoevaporation models of HST 10