A Gravitational Redshift Measurement of the White Dwarf Mass-Radius Relation
arXiv:2007.14517 · doi:10.3847/1538-4357/aba8a2
Abstract
The mass-radius relation of white dwarfs is largely determined by the equation of state of degenerate electrons, which causes the stellar radius to decrease as mass increases. Here we observationally measure this relation using the gravitational redshift effect, a prediction of general relativity that depends on the ratio between stellar mass and radius. Using observations of over three thousand white dwarfs from the Sloan Digital Sky Survey and the Gaia space observatory, we derive apparent radial velocities from absorption lines, stellar radii from photometry and parallaxes, and surface gravities by fitting atmospheric models to spectra. By averaging the apparent radial velocities of white dwarfs with similar radii and, independently, surface gravities, we cancel out random Doppler shifts and measure the underlying gravitational redshift. Using these results, we empirically measure the white dwarf mass-radius relation across a wide range of stellar masses. Our results are consistent with leading theoretical models, and our methods could be used with future observations to empirically constrain white dwarf core composition and evolution.
11 pages, 5 figures. Accepted to ApJ; corrected typos, added a reference and DOI
References in corpus (11)
- The NumPy array: a structure for efficient numerical computation
- The Milky Way's circular velocity curve between 4 and 14 kpc from APOGEE data
- emcee v3: A Python ensemble sampling toolkit for affine-invariant MCMC
- On the Measurement of Fundamental Parameters of White Dwarfs in the Gaia Era
- White dwarf and subdwarf stars in the Sloan Digital Sky Survey Data Release 14
- Testing the white dwarf mass-radius relationship with eclipsing binaries
- Measurements of Physical Parameters of White Dwarfs: A Test of the Mass-Radius Relation
- The Gaia DR1 Mass-Radius Relation for White Dwarfs
- The white dwarf mass-radius relation and its dependence on the hydrogen envelope
- Computational Tools for the Spectroscopic Analysis of White Dwarfs
- Masses of the Hyades white dwarfs: A gravitational redshift measurement
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