Modeling the physical and excitation conditions of the molecular envelope of NGC 7027
arXiv:1207.1826 · doi:10.1051/0004-6361/201219211
Abstract
The link between the shaping of bipolar planetary nebulae and the mass ejection activity of their central stars is still poorly understood. Appropriately characterizing the evolution of the shells ejected during the late stages of evolution is vital to gain insight into the mechanism of nebular shaping. Herschel/HIFI provides an invaluable tool by opening a new window from which to probe warm molecular gas (~50-1000 K). We present a radiative-transfer, spatio-kinematic modeling of the molecular envelope of the young planetary nebula NGC 7027 in high- and low-J 12CO and 13CO transitions observed by Herschel/HIFI and IRAM 30-m, and discuss the structure and dynamics of the molecular envelope. We have developed a code which, used along with the existing SHAPE software, implements spatio-kinematic modeling with accurate non-LTE calculations of line excitation and radiative transfer in molecular species. We have used this code to build a relatively simple "russian doll" model of the molecular envelope of NGC 7027. The model nebula consists of four nested, mildly bipolar shells plus a pair of high-velocity blobs. The innermost shell is the thinnest and shows a significant jump in physical conditions (temperature, density, abundance and velocity) with respect to the adjacent shell. This is a clear indication of a shock front in the system. Each of the high-velocity blobs is divided into two sections with different physical conditions. The presence of H2O in NGC 7027, a C-rich nebula, is likely due to photo-induced chemistry from the hot central star. The computed molecular mass of the nebula is 1.3 Msun, compatible with estimates from previous works.
11 pages, 3 figures. Accepted by Astronomy & Astrophysics on July 3rd, 2012
References in corpus (2)
Cited by in corpus (16)
- ALMA data suggest the presence of a spiral structure in the inner wind of CW Leo
- What can simulated molecular clouds tell us about real molecular clouds?
- Further ALMA observations and detailed modeling of the Red Rectangle
- Discovery of Rubidium, Cadmium, and Germanium Emission Lines in the Near-Infrared Spectra of Planetary Nebulae
- A New Radio Molecular Line Survey of Planetary Nebulae: HNC/HCN as a Diagnostic of Ultraviolet Irradiation
- Synthetic CO, H2 and HI surveys of the Galactic 2nd Quadrant, and the properties of molecular gas
- A wind-shell interaction model for multipolar planetary nebulae
- ALMA high spatial resolution observations of the dense molecular region of NGC 6302
- Warm gas in the rotating disk of the Red Rectangle: accurate models of molecular line emission
- SHAPEMOL: a 3-D code for calculating CO line emission in planetary and protoplanetary nebulae. Detailed model fitting of the complex nebula NGC 6302
- Panchromatic HST/WFC3 Imaging Studies of Young, Rapidly Evolving Planetary Nebulae. II. NGC 7027
- Evidence from SOFIA Imaging of Polycyclic Aromatic Hydrocarbon Formation along a Recent Outflow in NGC 7027
- The ionised and molecular mass of post-common-envelope planetary nebulae. The missing mass problem
- HI line observations of 290 evolved stars made with the Nancay Radio Telescope -- I. Data
- Chemistry and ro-vibrational excitation of HeH in the Planetary Nebula NGC 7027
- [Fe II] 1.644m imaging survey of planetary nebulae with low-ionisation structures