Buoyant crystals halt the cooling of white dwarf stars

Fuente: arXiv
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Hauptverfasser: Bédard, Antoine, Blouin, Simon, Cheng, Sihao
Format: Preprint
Veröffentlicht: 2024
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author Bédard, Antoine
Blouin, Simon
Cheng, Sihao
author_facet Bédard, Antoine
Blouin, Simon
Cheng, Sihao
contents White dwarfs are stellar remnants devoid of a nuclear energy source, gradually cooling over billions of years and eventually freezing into a solid state from the inside out. Recently, it was discovered that a population of freezing white dwarfs maintains a constant luminosity for a duration comparable to the age of the universe, signaling the presence of a powerful yet unknown energy source that inhibits the cooling. For certain core compositions, the freezing process is predicted to trigger a solid-liquid distillation mechanism, due to the solid phase being depleted in heavy impurities. The crystals thus formed are buoyant and float up, thereby displacing heavier liquid downward and releasing gravitational energy. Here we show that distillation interrupts the cooling for billions of years and explains all the observational properties of the unusual delayed population. With a steady luminosity surpassing that of some main-sequence stars, these white dwarfs defy their conventional portrayal as dead stars. Our results highlight the existence of peculiar merger remnants and have profound implications for the use of white dwarfs in dating stellar populations.
format Preprint
id arxiv_https___arxiv_org_abs_2409_04419
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Buoyant crystals halt the cooling of white dwarf stars
Bédard, Antoine
Blouin, Simon
Cheng, Sihao
Solar and Stellar Astrophysics
Astrophysics of Galaxies
Plasma Physics
White dwarfs are stellar remnants devoid of a nuclear energy source, gradually cooling over billions of years and eventually freezing into a solid state from the inside out. Recently, it was discovered that a population of freezing white dwarfs maintains a constant luminosity for a duration comparable to the age of the universe, signaling the presence of a powerful yet unknown energy source that inhibits the cooling. For certain core compositions, the freezing process is predicted to trigger a solid-liquid distillation mechanism, due to the solid phase being depleted in heavy impurities. The crystals thus formed are buoyant and float up, thereby displacing heavier liquid downward and releasing gravitational energy. Here we show that distillation interrupts the cooling for billions of years and explains all the observational properties of the unusual delayed population. With a steady luminosity surpassing that of some main-sequence stars, these white dwarfs defy their conventional portrayal as dead stars. Our results highlight the existence of peculiar merger remnants and have profound implications for the use of white dwarfs in dating stellar populations.
title Buoyant crystals halt the cooling of white dwarf stars
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
Plasma Physics
url https://arxiv.org/abs/2409.04419