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September 24, 20250 citationsOpen Access

Do White Dwarfs Sample Water-Rich Planetary Material?

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ITIsabella L. TrierweilerCMCarl MelisÉBÉrika Le Bourdais

Key Points

  • Results indicate a range of elemental abundances in white dwarfs, showing median uncertainties in water mass fractions around 15%.
  • Among He-dominated white dwarfs, 35 out of 39 water abundances align with corresponding H abundances.
  • The overall population of white dwarfs has a median water mass fraction of approximately 25%, indicating commonality of water-rich bodies.
  • Pollution analysis demonstrates that H-dominated white dwarfs tend to be more water-poor compared to He-dominated ones, suggesting compositional differences.

Abstract

Polluted white dwarfs offer a unique way to directly probe the compositions of exoplanetary bodies. We examine the water content of accreted material using the oxygen abundances of 51 highly polluted white dwarfs. Within this sample, we present new abundances for three H-dominated atmosphere white dwarfs that showed promise for accreting water-rich material. Throughout, we explore the impact of the observed phase and lifetime of accretion disks on the inferred elemental abundances of the parent bodies that pollute each white dwarf. Our results indicate that white dwarfs sample a range of dry to water-rich material, with median uncertainties in water mass fractions of 15\%. Amongst the He-dominated white dwarfs, 35/39 water abundances are consistent with corresponding H abundances. While for any individual white dwarf it may be ambiguous as to whether or not water is present in the accreted parent body, when considered as a population the prevalence of water-rich bodies is statistically robust. The population as a whole has a median water mass fraction of 25\%, and enforcing chondritic parent body compositions, we find that 31/51 WDs are likely to have non-zero water concentrations. This conclusion is different from a similar previous analysis of white dwarf pollution and we discuss reasons why this might be the case. Pollution in H-dominated white dwarfs continues to be more water-poor than in their He-dominated cousins, although the sample size of H-dominated white dwarfs remains small and the two samples still suffer a disjunction in the range of host star temperatures being probed.

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Cite This Study

Trierweiler et al. (2025) studied this question.

synapsesocial.com/papers/68d6d8ba8b2b6861e4c3f216https://doi.org/10.48550/arxiv.2508.20172
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