WDEC - A code for modeling white dwarf structure and pulsations
arXiv:1803.03848 · doi:10.3847/1538-3881/aab70e
Abstract
The White Dwarf Evolution Code (WDEC), written in Fortran, makes models of white dwarf stars. It is fast, versatile, and includes the latest physics. The code evolves hot (~ 100,000 K) input models down to a chosen effective temperature by relaxing the models to be solutions of the equations of stellar structure. The code can also be used to obtain g-mode oscillation modes for the models. WDEC has a long history going back to the late 1960's. Over the years, it has been updated and re-packaged for modern computer architectures, and has specifically been used in computationally intensive asteroseismic fitting. Generations of white dwarf astronomers and dozens of publications have made use of the WDEC, although the last true instrument paper is the original one, published in 1975. This paper discusses the history of the code, necessary to understand why it works the way it does, details the physics and features in the code today, and points the reader to where to find the code and a user guide.
10 pages, 9 figures. To appear in the Astronomical Journal
References in corpus (6)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Asteroseismic inferences on GW Vir variable stars in the frame of new PG 1159 evolutionary models
- Calibration of the Mixing-Length Theory for Convective White Dwarf Envelopes
- An asteroseismic constraint on the mass of the axion from the period drift of the pulsating DA white dwarf star L19-2
- Strong limits on the DFSZ axion mass with G117-B15A
- Toward High Precision Seismic Studies of White Dwarf Stars: Parametrization of the Core and Tests of Accuracy
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- Precise Ages of Field Stars From White Dwarf Companions in Gaia DR2
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- Stellar Neutrino Emission Across The Mass-Metallicity Plane
- ZZ Ceti stars of the southern ecliptic hemisphere re-observed by TESS
- Asteroseismology of the DAV star L19-2
- Properties and Asteroseismological analysis of a new ZZ ceti discovered by TMTS
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- Seismological Studies of Pulsating DA White Dwarfs Observed with the Kepler Space Telescope and K2 Campaigns 1-8
- Asteroseismic study of KUV03442+0719 with parallax constraints
- Application of a screened Coulomb potential in fitting the DAV star HS 0507+0434B
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- Constraints from parallaxes and average period spacings in the asteroseismic study of 8 DAVs
- Seismic test of the mass-radius relationship of hydrogen-atmospheric white dwarf stars
- GD 99: Re-investigation of an old ZZ Ceti companion
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- Improving white dwarfs as chronometers with Gaia parallaxes and spectroscopic metallicities
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