Testing the evolution of the DB white dwarf GD 358: First results of a new approach using asteroseismology
J. M. Gonzalez Perez, T. S. Metcalfe

TL;DR
This paper introduces a novel asteroseismology-based method to investigate the evolutionary history of the DB white dwarf GD358 by analyzing its internal C/O profile, revealing potential binary evolution influences.
Contribution
The study develops a new approach combining C/O profile modeling and genetic algorithms to infer the star's evolutionary history from pulsation data.
Findings
Binary evolution profiles fit the pulsation data better.
Two CE phases with mass loss best match observations.
Best-fit model aligns with known white dwarf properties.
Abstract
We present a new method that investigates the evolutionary history of the pulsating DB white dwarf GD358 using asteroseismology. This is done considering the internal C/O profile, which describes the relative abundances of carbon and oxygen from the core of the star to its surface. Different evolutionary channels lead to the generation of different C/O profiles, and these affect the pulsation periods. We used C/O profiles associated with white dwarfs that evolved through binary evolution channels where the progenitor experienced one or two episodes of mass loss during one or two common envelope (CE) phases, and two profiles from single star evolution. We computed models using these different profiles and used a genetic algorithm (GA) to optimize the search in the parameter space in order to find the best-fit to the observed pulsation periods. We used three-parameter models, adjusting…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astronomical Observations and Instrumentation
