Magnetic fields in isolated and interacting white dwarfs
arXiv:2001.10147 · doi:10.1016/j.asr.2019.11.012
Abstract
The magnetic white dwarfs (MWDs) are found either isolated or in interacting binaries. They divide into two groups: a high field group (0.1-1,000MegaGauss) comprising some 13% of all white dwarfs (WDs), and a low field group (B<0.1MG) whose incidence is currently under investigation. The situation may be similar in magnetic binaries because the bright accretion discs in low field systems hide the photosphere of their WDs thus preventing the study of their magnetic fields' strength and structure. Considerable research has been devoted to the vexed question on the origin of magnetic fields. One hypothesis is that WD magnetic fields are of fossil origin. The other is that magnetic fields arise from binary interaction, through differential rotation, during common envelope evolution. The recently discovered population of hot, carbon-rich WDs exhibiting an incidence of magnetism of up to about 70% and a variability from a few minutes to a couple of days may support the merging binary hypothesis. Several studies have raised the possibility of the detection of planets around MWDs. Rocky planets may be discovered by the detection of anomalous atmospheric heating of the MWD. Planetary remains have recently revealed themselves in the atmospheres of about 25% of WDs that are polluted by elements such as Ca, Si, and often also Mg, Fe, Na. This pollution has been explained by ongoing accretion of planetary debris. The study of isolated and accreting MWDs is likely to continue to yield exciting discoveries for many years to come.
Invited, refereed review paper to appear in the COSPAR 2018 special issue of Advances in Space Research (Elsevier) entitled Nova Eruptions, Cataclysmic Variables and related systems: Observational vs. theoretical challenges in the 2020 era, 98 pages, 30 figures
References in corpus (32)
- Magnetic White Dwarfs
- Weak magnetic fields in Ap/Bp stars: Evidence for a dipole field lower limit and a tentative interpretation of the magnetic dichotomy
- Binary Star Origin of High Field Magnetic White Dwarfs
- White Dwarf Rotation as a Function of Mass and a Dichotomy of Mode Linewidths: Kepler Observations of 27 Pulsating DA White Dwarfs Through K2 Campaign 8
- Externally-polluted white dwarfs with dust disks
- Spectropolarimetric Survey of Hydrogen-rich White Dwarf Stars
- Simulations of core convection in rotating A-type stars: Magnetic dynamo action
- On the Measurement of Fundamental Parameters of White Dwarfs in the Gaia Era
- Rare White dwarf stars with carbon atmospheres
- The accretion-diffusion scenario for metals in cool white dwarfs
- Characterisation of the magnetic field of the Herbig Be star HD 200775
- Hot DQ White Dwarfs: Something Different
- A Chandra Search for Coronal X Rays from the Cool White Dwarf GD 356
- Cool DZ white dwarfs I: Identification and spectral analysis
- Constraints on the space density of intermediate polars from the Swift-BAT survey
- SDSS J142625.71+575218.3, a Prototype for a New Class of Variable White Dwarf
- Magnetic Field Generation in Stars
- The fraction of DA white dwarfs with kilo-Gauss magnetic fields
- Merging Binary Stars and the magnetic white dwarfs
- The incidence of magnetic fields in cool DZ white dwarfs
- Solar Abundances of Rock Forming Elements, Extreme Oxygen and Hydrogen in a Young Polluted White Dwarf
- SDSS J142625.71+575218.3: The First Pulsating White Dwarf with a Large Detectable Magnetic Field
- IGR J19552+0044: A new asynchronous short period polar: "Filling the gap between intermediate and ordinary polars"
- Enigmas from the Sloan Digital Sky Survey DR7 Kleinman White Dwarf Catalog
- Might Carbon-Atmosphere White Dwarfs Harbour a New Type of Pulsating Star?
- Detection of a Variable Infrared Excess Around SDSS 121209.31+013627.7
- Monitoring and modelling of white dwarfs with extremely weak magnetic fields
- The long term polarimetric variability of the strongly magnetic white dwarf Grw+708247
- A fast spinning magnetic white dwarf in the double-degenerate, super-Chandrasekhar system NLTT 12758
- PALOMA: A Magnetic CV between Polars and Intermediate Polars
- Discovery of kilogauss magnetic fields on the nearby white dwarfs WD1105-340 and WD2150+591
- A Detailed Spectroscopic and Photometric Analysis of DQ White Dwarfs