Excitation of emission lines by fluorescence and recombination in IC418
arXiv:1208.0886 · doi:10.1111/j.1365-2966.2012.21862.x
Abstract
We compare calculated intensities of lines of CII, NI, NII, OI and OII with a published deep spectroscopic survey of planetary nebula IC 418. Our calculations use a self-consistent nebular model and a synthetic spectrum of the central star atmosphere to take into account line excitation by continuum fluorescence and electron recombination. We found that the NII spectrum of s, p and most d states is excited by fluorescence due to the low excitation conditions of the nebula. Many CII and OII lines have significant amounts of excitation by fluorescence. Recombination excites all the lines from f and g states and most OII lines. In the neutral-ionized boundary the NI quartet and OI triplet dipole allowed lines are excited by fluorescence, while the quintet OI lines are excited by recombination. Electron excitation produces the forbidden optical lines of OI, and continuum fluorescence enhances the NI forbidden line intensities. Lines excited by fluorescence of light below the Lyman limit thus suggest a new diagnostic to explore the inner boundary of the photodissociation region of the nebula.
Accepted for publication in MNRAS, 20 pages, 6 figures, 11 tables
References in corpus (11)
- On the abundance discrepancy problem in HII regions
- Chemical abundances for Hf 2-2, a planetary nebula with the strongest known heavy element recombination lines
- Integral field spectroscopy of planetary nebulae: mapping the line diagnostics and hydrogen-poor zones with VLT FLAMES
- Understanding and reducing statistical uncertainties in nebular abundance determinations
- A self-consistent stellar and 3D nebular model for Planetary Nebula IC418
- Faint recombination lines in Galactic PNe with [WC] nucleus
- New effective recombination coefficients for nebular N II lines
- Small scale behavior of the physical conditions and the abundance discrepancy in the Orion nebula
- Independent Emission and Absorption Abundances for Planetary Nebulae
- Emission line profiles as a probe of physical conditions in planetary nebulae
- Approximate Selection Rule for Orbital Angular Momentum in Atomic Radiative Transitions
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