English

A rotating white dwarf shows different compositions on its opposite faces

Solar and Stellar Astrophysics 2023-08-16 v1 Earth and Planetary Astrophysics

Abstract

White dwarfs, the extremely dense remnants left behind by most stars after their death, are characterised by a mass comparable to that of the Sun compressed into the size of an Earth-like planet. In the resulting strong gravity, heavy elements sink toward the centre and the upper layer of the atmosphere contains only the lightest element present, usually hydrogen or helium. Several mechanisms compete with gravitational settling to change a white dwarf's surface composition as it cools, and the fraction of white dwarfs with helium atmospheres is known to increase by a factor ~2.5 below a temperature of about 30,000 K; therefore, some white dwarfs that appear to have hydrogen-dominated atmospheres above 30,000 K are bound to transition to be helium-dominated as they cool below it. Here we report observations of ZTF J203349.8+322901.1, a transitioning white dwarf with two faces: one side of its atmosphere is dominated by hydrogen and the other one by helium. This peculiar nature is likely caused by the presence of a small magnetic field, which creates an inhomogeneity in temperature, pressure or mixing strength over the surface. ZTF J203349.8+322901.1 might be the most extreme member of a class of magnetic, transitioning white dwarfs -- together with GD 323, a white dwarf that shows similar but much more subtle variations. This new class could help shed light on the physical mechanisms behind white dwarf spectral evolution.

Keywords

Cite

@article{arxiv.2308.07430,
  title  = {A rotating white dwarf shows different compositions on its opposite faces},
  author = {Ilaria Caiazzo and Kevin B. Burdge and Pier-Emmanuel Tremblay and James Fuller and Lilia Ferrario and Boris T. Gaensicke and J. J. Hermes and Jeremy Heyl and Adela Kawka and S. R. Kulkarni and Thomas R. Marsh and Przemek Mroz and Thomas A. Prince and Harvey B. Richer and Antonio C. Rodriguez and Jan van Roestel and Zachary P. Vanderbosch and Stephane Vennes and Dayal Wickramasinghe and Vikram S. Dhillon and Stuart P. Littlefair and James Munday and Ingrid Pelisoli and Daniel Perley and Eric C. Bellm and Elme Breedt and Alex J. Brown and Richard Dekany and Andrew Drake and Martin J. Dyer and Matthew J. Graham and Matthew J. Green and Russ R. Laher and Paul Kerry and Steven G. Parsons and Reed L. Riddle and Ben Rusholme and Dave I. Sahman},
  journal= {arXiv preprint arXiv:2308.07430},
  year   = {2023}
}

Comments

45 pages, 11 figures

R2 v1 2026-06-28T11:55:34.109Z