Advances in Astronomy and Space Physics, Volume 10, Issue 1, PP. 12-20 (2020)
doi: 10.17721/2227-1481.10.12-20
Comparison of the photoionisation modelling results
for planetary nebulae with the observed data
for planetary nebulae with the observed data
Department of Astrophysics, Ivan Franko National University of Lviv, 8 Kyryla & Mephodiya str., Lviv, Ukraine
Abstract
The grid of new photoionisation models for planetary nebulae (PNe) along the evolutionary tracks of their nuclei was calculated, taking into account the dust presence with abundances that correspond to the averaged ones for Milky Way and Large Magellanic Cloud. The calculations were performed by the last version of G. Ferland's code Cloudy v17.01 using the semi-empirical law derived by Golovatyy-Mal'kov to describe the radial density distribution of matter in the nebular envelope of PN. Resulting modelling spectra were compared with the corresponding observed emission line spectra of PNe in optical range, obtained previously by other authors. Also the database of observations by the Infrared Space Observatory and Spitzer have been used to compare the results of synthetic photometry with the observed photometric data. It was shown that the intensities of strong emission lines in optical range as well as the observed color-color diagrams obtained using total fluxes in the 3.6 μm, 4.5μm, 8.0μm and 24.0 μm bands are reproduced very well by our models, while the results of synthetic IR-photometry based on total fluxes in the band 5.8 μm show discrepancies with corresponding observed data.
Keywords:
ISM: abundances, lines and bands; infrared: ISM