Photoevaporation of Molecular Clouds in Regions of Massive Star Formation as Revealed Through H and Br Emission
arXiv:1810.11464 · doi:10.3847/1538-4357/aaeb8d
Abstract
We examine new and pre-existing wide-field, continuum-corrected, narrowband images in H 1-0 S(1) and Br of three regions of massive star formation: IC 1396, Cygnus OB2, and Carina. These regions contain a variety of globules, pillars, and sheets, so we can quantify how the spatial profiles of emission lines behave in photodissociation regions (PDRs) that differ in their radiation fields and geometries. We have measured 450 spatial profiles of H and Br along interfaces between HII regions and PDRs. Br traces photoevaporative flows from the PDRs, and this emission declines more rapidly with distance as the radius of curvature of the interface decreases, in agreement with models. As noted previously, H emission peaks deeper into the cloud relative to Br, where the molecular gas absorbs far-UV radiation from nearby O-stars. Although PDRs in IC 1396, Cygnus OB2, and Carina experience orders of magnitude different levels of ionizing flux and have markedly differing geometries, all the PDRs have spatial offsets between Br and H on the order of cm. There is a weak negative correlation between the offset size and the intensity of ionizing radiation and a positive correlation with the radius of curvature of the cloud. We can reproduce both the size of the offsets and the dependencies of the offsets on these other variables with simple photoevaporative flow models. Both Br and H 1-0 S(1) will undoubtedly be targeted in future JWST observations of PDRs, so this work can serve as a guide to interpreting these images.
19 pages, 17 figures. Accepted to ApJ
References in corpus (15)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- Slow Star Formation in Dense Gas: Evidence and Implications
- H3+ in Diffuse Interstellar Clouds: a Tracer for the Cosmic-Ray Ionization Rate
- The Dynamics of Radiation Pressure-Dominated HII Regions
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- The Massive Star Population of Cygnus OB2
- Synthetic observations of star formation and the interstellar medium
- New massive members of Cygnus OB2
- Clumpy photon-dominated regions in Carina. I. [CI] and mid-J CO lines in two 4'x4' fields
- A Survey of Irradiated Pillars, Globules, and Jets in the Carina Nebul
- Merged ionization/dissociation fronts in planetary nebulae
- The Herschel/PACS view of the Cep OB2 region: Global protoplanetary disk evolution and clumpy star formation
- Molecular and Ionized Hydrogen in 30 Doradus. I. Imaging Observations
Cited by in corpus (8)
- PDRs4All: A JWST Early Release Science Program on radiative feedback from massive stars
- Near- and mid-infrared observations in the inner tenth of a parsec of the Galactic center -- Detection of proper motion of a filament very close to Sgr~A*
- Illuminating the Tadpole's metamorphosis I: MUSE observations of a small globule in a sea of ionizing photons
- The evolution of the internal structure of massive star forming regions in the Milky Way as revealed by ALMA
- A JWST Preview: Adaptive-Optics Images of H, Br-, and K-continuum in Carina's Western Wall
- Detection of the [C I] 8727 emission line. Low-ionization structures in NGC 7009
- ALMA Datacubes and Continuum Maps of the Irradiated Western Wall in Carina
- [Fe II] 1.644m imaging survey of planetary nebulae with low-ionisation structures