Planetary Accretion Is Less Frequent in Wide Binaries: Evidence from Metal-Enriched White Dwarfs in DESI DR1

arXiv:2609.11798 · astro-ph.EP, astro-ph.SR · Submitted 2026-09-10 · Read on arXiv

astro-ph.EP, astro-ph.SR

Submitted: 2026-09-10

Updated: 2026-09-10

Comments: 13 pages, 4 figures, 1 table, ApJ, in press

License: http://creativecommons.org/licenses/by/4.0/

The gist: Binary stars are common in the Galaxy, and understanding how stellar binarity influences the formation and evolution of planetary systems is an active area of research.

Terminology

Abstract

Binary stars are common in the Galaxy, and understanding how stellar binarity influences the formation and evolution of planetary systems is an active area of research. In this study, we use metal-enriched white dwarfs in wide binaries as tracers of long-lived planetary systems. With Data Release 1 from the Dark Energy Spectroscopic Instrument (DESI), we find that the fraction of cool metal-enriched white dwarfs in wide binaries is 9.8, plus or minus,2.1%, significantly lower (4.7, σ) than the 20.5, plus or minus,0.9% in a control sample of single systems. Furthermore, we identify a tentative dependence of metal enrichment on projected separation and white dwarf effective temperature, where enrichment fraction decreases at smaller separations and lower temperatures. These findings indicate that, compared to single stars, binary systems either start with smaller initial planetary reservoirs due to suppressed planetesimal formation or undergo more rapid depletion of planetary material during the initial part of the white dwarf stage.

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