The Herschel Planetary Nebula Survey (HerPlaNS) - a comprehensive dusty photoionization model of NGC6781
arXiv:1707.06565 · doi:10.3847/1538-4365/aa8175
Abstract
We perform a comprehensive analysis of the planetary nebula (PN) NGC6781 to investigate the physical conditions of each of its ionized, atomic, and molecular gas and dust components and the object's evolution, based on panchromatic observational data ranging from UV to radio. Empirical nebular elemental abundances, compared with theoretical predictions via nucleosynthesis models of asymptotic giant branch (AGB) stars, indicate that the progenitor is a solar-metallicity, 2.25-3.0 Msun initial-mass star. We derive the best-fit distance of 0.46 kpc by fitting the stellar luminosity (as a function of the distance and effective temperature of the central star) with the adopted post-AGB evolutionary tracks. Our excitation energy diagram analysis indicate high excitation temperatures in the photodissociation region (PDR) beyond the ionized part of the nebula, suggesting extra heating by shock interactions between the slow AGB wind and the fast PN wind. Through iterative fitting using the Cloudy code with empirically-derived constraints, we find the best-fit dusty photoionization model of the object that would inclusively reproduce all of the adopted panchromatic observational data. The estimated total gas mass (0.41 Msun) corresponds to the mass ejected during the last AGB thermal pulse event predicted for a 2.5 Msun initial-mass star. A significant fraction of the total mass (about 70 percent) is found to exist in the PDR, demonstrating the critical importance of the PDR in PNe that are generally recognized as the hallmark of ionized/H+ regions.
34 pages, 13 Figures and 16 Tables, accepted for publication in the Astrophysical Journal Supplement Series
References in corpus (11)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Stellar Models and Yields of Asymptotic Giant Branch Stars
- The Magellanic Cloud Calibration of the Galactic Planetary Nebula Distance Scale
- The Chandra Planetary Nebulae Survey (ChanPlaNS): III. X-ray Emission from the Central Stars of Planetary Nebulae
- VERA 22 GHz fringe search survey
- PAH Formation in O-rich Planetary Nebulae
- Merged ionization/dissociation fronts in planetary nebulae
- Herschel Planetary Nebula Survey (HerPlaNS) - First Detection of OH+ in Planetary Nebulae
- 3-D Photoionization Structure and Distances of Planetary Nebulae III. NGC 6781
- Millimeter observations of Planetary Nebulae: a contribution to the Planck pre-launch catalogue
- Optical and Mid-Infrared Observations of the Planetary Nebula NGC 6781
Cited by in corpus (10)
- Planetary Nebulae: Sources of Enlightenment
- Binary Central Stars of Planetary Nebulae Identified With Kepler/K2
- Physical properties of the fluorine and neutron-capture element-rich PN Jonckheere 900
- Morphology and ionization characteristics of planetary nebulae PB 1 and PC 19
- Seimei KOOLS-IFU Mapping of the Gas and Dust Distributions in Galactic Planetary Nebulae: the Case of IC2165
- Compact planetary nebulae MaC 2-1 and Sp 4-1: Photoionization models and dust characteristics
- Morpho-kinematic and photoionization models of the multipolar structures in planetary nebula NGC 6572
- H molecular gas in the old planetary nebula NGC 3587
- A Survey for C II Emission-Line Stars in the Large Magellanic Cloud. II. Final Results and the Origin of C II Emission in [WC] Spectra
- Is the nitrogen-rich source PN K4-47 a true planetary nebula?