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Constraints on Remnant Planetary Systems as a Function of Main-Sequence Mass with HST/COS

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arxiv 2410.06335 v1 pith:YIO3K75V submitted 2024-10-08 astro-ph.SR astro-ph.EP

Constraints on Remnant Planetary Systems as a Function of Main-Sequence Mass with HST/COS

classification astro-ph.SR astro-ph.EP
keywords dwarfswhiteodotplanetarystarsmainmassesmassive
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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As the descendants of stars with masses less than 8 M$_{\odot}$ on the main sequence, white dwarfs provide a unique way to constrain planetary occurrence around intermediate-mass stars (spectral types BAF) that are otherwise difficult to measure with radial-velocity or transit surveys. We update the analysis of more than 250 ultraviolet spectra of hot ($13{,}000$ K $< T_{\mathrm{eff}} <$ $30{,}000$ K), young (less than $800$ Myr) white dwarfs collected by the Hubble Space Telescope, which reveals that more than 40% of all white dwarfs show photospheric silicon and sometimes carbon, signpost for the presence of remnant planetary systems. However, the fraction of white dwarfs with metals significantly decreases for massive white dwarfs (M$_{\rm WD}~>$ 0.8 M$_{\odot}$), descendants of stars with masses greater than 3.5 M$_{\odot}$ on the main sequence, as just $11^{+6}_{-4}$% exhibit metal pollution. In contrast, $44\pm6$% of a subset of white dwarfs (M$\rm _{WD}~<$ 0.7 M$_{\odot}$) unbiased by the effects of radiative levitation are actively accreting planetary debris. While the population of massive white dwarfs is expected to be influenced by the outcome of binary evolution, we do not find merger remnants to broadly affect our sample. We connect our measured occurrence rates of metal pollution on massive white dwarfs to empirical constraints into planetary formation and survival around stars with masses greater than 3.5 M$_{\odot}$ on the main sequence.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. The Effects of Magnetic Accretion on the Spatial Extent of White Dwarf Pollution

    astro-ph.SR 2026-07 conditional novelty 6.0

    Magnetic channeling concentrates white dwarf pollution into small patches, makes metal lines vary as the star spins, and biases inferred accretion rates low.

  2. First planetesimals from DESI DR1: 12 highly metal-rich white dwarfs

    astro-ph.EP 2026-07 conditional novelty 6.0

    Twelve white dwarfs from DESI DR1 have accreted debris resembling inner-Solar-System rock, with two systems likely accreting water-rich planetesimals.