An Ultramassive White Dwarf with a Likely Oxygen-Neon Core
Stefan M. Arseneau, J. J. Hermes, Vedant Chandra, Roberto Raddi, Maria E. Camisassa, Alberto Rebassa-Mansergas, Santiago Torres
astro-ph.SR
Submitted: 2026-06-17
Comments: 12 pages, 5 figures, 1 table, accepted for publication in ApJ
Code: https://github.com/vedantchandra/corv
License: http://creativecommons.org/licenses/by/4.0/
The gist: The core composition of ultramassive white dwarfs remains an open question in stellar evolution.
Terminology
Abstract
The core composition of ultramassive white dwarfs remains an open question in stellar evolution. The carbon content of white dwarf cores is critical to their role as progenitors of Type Ia supernovae. However, because the stellar photosphere only extends to the outermost layer of the star, observational probes of core compositions are limited. Here we present gravitational redshift measurements of an ultramassive white dwarf, SDSS J060851.44-005950.3, which indicate the likely presence of an oxygen-neon core. We measure the mass (1.226-0.025+0.024 M) and radius (0.491-0.009+0.009 R) of the white dwarf using gravitational redshifts from high-resolution UVES and MagE spectra paired with independent constraints from photometry. By comparing to state-of-the-art mass-radius relations for ultramassive white dwarfs, we find preference for a oxygen-neon core over a carbon-oxygen core, with a Bayes factor of 2.7. This is a white dwarf which is likely structurally incapable of producing a Type Ia supernova, according to current understanding of supernova physics. This object provides evidence that white dwarfs which pass through the Q-branch without experiencing a delay in cooling compared to the normal white dwarf cooling sequence likely have oxygen-neon cores.
Sources
- The Pan-STARRS1 Surveys
- Revisiting the Galactic age-metallicity relation from wide white dwarf-main-sequence binaries
- Theoretical Studies of Accretion of Matter onto White Dwarfs and the Single Degenerate Scenario for Supernovae of Type Ia
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