Trace of planetary nebula evolution by distance-independent parameters

Using existing infrared and radio data on a sample of 432 planetary nebulae, we derived a number of distance-independent parameters for comparison with evolutionary models of planetary nebulae. We find that many of the observed properties of planetary nebulae can be explained by current central star...

Full description

Saved in:
Bibliographic Details
Published inThe Astrophysical journal. Supplement series Vol. 88; no. 1; pp. 137 - 167
Main Authors Zhang, C. Y., Kwok, S.
Format Journal Article
LanguageEnglish
Published Legacy CDMS University of Chicago Press 01.09.1993
Subjects
Online AccessGet full text
ISSN0067-0049
1538-4365
DOI10.1086/191818

Cover

More Information
Summary:Using existing infrared and radio data on a sample of 432 planetary nebulae, we derived a number of distance-independent parameters for comparison with evolutionary models of planetary nebulae. We find that many of the observed properties of planetary nebulae can be explained by current central star evolutionary models, even if the time scales are subject to significant change by a factor of up to an order of magnitude. Specifically, we find that the evolutionary tracks are well separated in the radio surface brightness-central star temperature plane, therefore allowing us to determine the core mass of individual planetary nebulae. We also obtain the luminosity and gravity of the central stars of individual nebulae, from their temperature and core mass, without relying on the distance assumptions. We find that our results of the core mass are in good agreement with those of Mendez et al. (1992) and Tylenda et al. (1991). A systematic, large discrepancy is found between the luminosity found in this work and that found by Gathier and Pottasch (1986).
Bibliography:CDMS
Legacy CDMS
ISSN: 0067-0049
ISSN:0067-0049
1538-4365
DOI:10.1086/191818