Buoyant crystals halt the cooling of white dwarf stars
arXiv:2409.04419 · doi:10.1038/s41586-024-07102-y
Abstract
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.
Published in Nature, 6 March 2024
References in corpus (32)
- Updated Electron-Conduction Opacities: The Impact on Low-Mass Stellar Models
- A catalogue of white dwarfs in Gaia EDR3
- On the Spectral Evolution of Hot White Dwarf Stars. I. A Detailed Model-Atmosphere Analysis of Hot White Dwarfs from SDSS DR12
- The Ages of the Thin Disk, Thick Disk, and the Halo from Nearby White Dwarfs
- The 100 pc White Dwarf Sample in the SDSS Footprint
- Current challenges in the physics of white dwarf stars
- Gaia DR2 reveals a star formation burst in the disc 2-3 Gyr ago
- Evolutionary Models for the Remnant of the Merger of Two Carbon-Oxygen Core White Dwarfs
- A New Generation of Cool White Dwarf Atmosphere Models. IV. Revisiting the Spectral Evolution of Cool White Dwarfs
- Ne Phase Separation As A Solution To The Ultramassive White Dwarf Cooling Anomaly
- New Conductive Opacities for White Dwarf Envelopes
- The Canada-France Imaging Survey: Reconstructing the Milky Way Star Formation History from its White Dwarf Population
- The updated BaSTI stellar evolution models and isochrones. III. White Dwarfs
- An ultra-massive white dwarf with a mixed hydrogen-carbon atmosphere as a likely merger remnant
- Gravitational settling of 22Ne and white dwarf evolution
- The formation of ultra-massive carbon-oxygen core white dwarfs and their evolutionary and pulsational properties
- Toward Precision Cosmochronology: A New C/O Phase Diagram for White Dwarfs
- The star formation history in the solar neighborhood as told by massive white dwarfs
- The Merger Fraction of Ultramassive White Dwarfs
- Carbon-Oxygen Phase Separation in MESA White Dwarf Models
- On the Spectral Evolution of Hot White Dwarf Stars. II. Time-dependent Simulations of Element Transport in Evolving White Dwarfs with STELUM
- Direct Evaluation of the Phase Diagrams of Dense Multicomponent Plasmas by Integration of the Clapeyron Equations
- Local stellar formation history from the 40 pc white dwarf sample
- Heat transport and convective velocities in compositionally-driven convection in neutron star and white dwarf interiors
- On the formation of hot DQ white dwarfs
- Electron conduction opacities at the transition between moderate and strong degeneracy: Uncertainties and impact on stellar models
- Structure and evolution of ultra-massive white dwarfs in general relativity
- Phase Separation in Ultramassive White Dwarfs
- The Cooling of Massive White Dwarfs from Gaia EDR3
- Accurate Diffusion Coefficients for Dense White Dwarf Plasma Mixtures
- Carbon-oxygen ultra-massive white dwarfs in general relativity
- The origin of ultramassive white dwarfs: hints from Gaia EDR3
Cited by in corpus (14)
- The spectral evolution of white dwarfs: where do we stand?
- Ne22 distillation and the cooling sequence of the old metal-rich open cluster NGC 6791
- Fundamental Tests of White Dwarf Cooling Physics with Wide Binaries
- Atmospheric heating and magnetism driven by Ne distillation in isolated white dwarfs
- Younger age for the oldest magnetic white dwarfs
- A hot white dwarf merger remnant revealed by an ultraviolet detection of carbon
- Seismology and diffusion of ultramassive white dwarf magnetic fields
- Three-component Phase Separation for Ultramassive White Dwarf Models
- Crystal nucleation rates in one-component Yukawa systems
- White Dwarf Stars in the Big Data Era
- The Fraction of Distilled White Dwarfs with Long-Lived Habitable Zones
- Double white dwarf binary population in MOCCA star clusters -- Comparisons with observations of close and wide binaries
- A new method to retrieve the star formation history from white dwarf luminosity functions -- an application to the Gaia catalogue of nearby stars
- Deriving Reliable Nucleation Rates from Metadynamics Simulations: Application to Yukawa Fluids