The secular evolution of planetary nebula IC 418 and its implications for carbon star formation
arXiv:2508.14752 · doi:10.3847/2041-8213/adf62b
Abstract
The rate of stellar evolution can rarely be measured in real time. The fastest evolution (excluding event-driven evolution), where stars may evolve measurably over decades, is during the post-AGB phase. In this paper we provide direct evidence for such a case. A secular, linear, factor of ~2.5 increase is found in the strength of the [O III] lines relative to H-beta over an 130 year period in the young, well-known, low excitation planetary nebula IC 418. The increase is caused by the rising temperature of the central star. We use photo-ionization models to derive a model dependent heating rate for the central star in the range 15-42 K\/yr. These derived heating rates are very sensitive to the stellar mass, and yield a central-star mass of 0.560-0.583 solar masses. Initial-final mass relations based on the Miller-Bertolami models give a progenitor main-sequence mass of 1.25-1.55 solar masses. IC 418 is a carbon rich planetary nebula and its central star, HD 35914, has evolved from an AGB carbon star. This result shows that carbon star formation at solar metallicity extends to these low masses. This is lower than commonly assumed and suggests that post-AGB evolution may be slower than recent post-AGB models predict.
References in corpus (32)
- Measuring Reddening with SDSS Stellar Spectra and Recalibrating SFD
- Post-Asymptotic Giant Branch Evolution of Low- and Intermediate-Mass Stars. Preliminary Results
- New models for the evolution of Post-Asymptotic Giant Branch stars and Central Stars of Planetary Nebulae
- Stellar yields from metal-rich asymptotic giant branch models
- The White Dwarf Initial-Final Mass Relation for Progenitor Stars From 0.85 to 7.5 M
- The Hα surface brightness - radius relation: a robust statistical distance indicator for planetary nebulae
- A Hubble Space Telescope Survey for Resolved Companions of Planetary-Nebula Nuclei
- Carbon star formation as seen through the non-monotonic initial-final mass relation
- Physical Properties of Fullerene-containing Galactic Planetary Nebulae
- A catalogue of integrated H-alpha fluxes for 1,258 Galactic planetary nebulae
- The Evolution of NGC 7027 at Radio Frequencies: A New Determination of the Distance and Core Mass
- Accelerated post-AGB evolution, initial-final mass relations, and the star-formation history of the Galactic bulge
- A self-consistent stellar and 3D nebular model for Planetary Nebula IC418
- White dwarf masses derived from planetary nebulae modelling
- The evolution of Galactic planetary nebula progenitors through the comparison of their nebular abundances with AGB yields
- Breaking news from the HST: The central star of the Stingray Nebula is now returning towards the AGB
- Unveiling shocks in planetary nebulae
- A pilot search for mm-wavelength recombination lines from emerging ionized winds in pre-planetary nebulae candidates
- IFU spectroscopy of Southern Planetary Nebulae IV: A Physical Model for IC 418
- Excitation of emission lines by fluorescence and recombination in IC418
- Modeling dust emission in PN IC 418
- Radio variability and non-thermal components in stars evolving toward planetary nebulae
- Discovery of Multiple Shells Around the Planetary Nebula IC 418
- Expansion parallax of the planetary nebula IC 418
- The physics and kinematics of the evolved, interacting planetary nebula PN G342.0-01.7
- Stellar wind models of central stars of planetary nebulae
- The evolving spectrum of the planetary nebula Hen 2-260
- Stellar parameters for the central star of the planetary nebula PRTM 1 using the German Astrophysical Virtual Observatory service TheoSSA
- Evolution of the central stars of young planetary nebulae
- GTC/CanariCam mid-IR imaging of the fullerene-rich Planetary Nebula IC 418: searching for the spatial distribution of fullerene-like molecules
- The physical association of planetary nebula NGC 2818 with open cluster NGC 2818A
- Morpho-kinematic and photoionization models of the multipolar structures in planetary nebula NGC 6572