A test of the planet-star unipolar inductor for magnetic white dwarfs
arXiv:2103.01993 · doi:10.1093/mnras/stab617
Abstract
Despite thousands of spectroscopic detections, only four isolated white dwarfs exhibit Balmer emission lines. The temperature inversion mechanism is a puzzle over 30 years old that has defied conventional explanations. One hypothesis is a unipolar inductor that achieves surface heating via ohmic dissipation of a current loop between a conducting planet and a magnetic white dwarf. To investigate this model, new time-resolved spectroscopy, spectropolarimetry, and photometry of the prototype GD 356 are studied. The emission features vary in strength on the rotational period, but in anti-phase with the light curve, consistent with a cool surface spot beneath an optically thin chromosphere. Possible changes in the line profiles are observed at the same photometric phase, potentially suggesting modest evolution of the emission region, while the magnetic field varies by 10 per cent over a full rotation. These comprehensive data reveal neither changes to the photometric period, nor additional signals such as might be expected from an orbiting body. A closer examination of the unipolar inductor model finds points of potential failure: the observed rapid stellar rotation will inhibit current carriers due to the centrifugal force, there may be no supply of magnetospheric ions, and no anti-phase flux changes are expected from ohmic surface heating. Together with the highly similar properties of the four cool, emission-line white dwarfs, these facts indicate that the chromospheric emission is intrinsic. A tantalizing possibility is that intrinsic chromospheres may manifest in (magnetic) white dwarfs, and in distinct parts of the HR diagram based on structure and composition.
17 pages, 10 figures, 4 tables, accepted to MNRAS
References in corpus (17)
- The Transiting Exoplanet Survey Satellite
- The frequency of planetary debris around young white dwarfs
- Magnetic White Dwarfs
- New white dwarf stars in the Sloan Digital Sky Survey Data Release 10
- Binary Star Origin of High Field Magnetic White Dwarfs
- Spectropolarimetric Survey of Hydrogen-rich White Dwarf Stars
- Rare White dwarf stars with carbon atmospheres
- Magnetic fields in isolated and interacting white dwarfs
- Hot DQ White Dwarfs: Something Different
- A Chandra Search for Coronal X Rays from the Cool White Dwarf GD 356
- white dwarfs within 40 pc I: spectroscopic observations of new candidates
- The pecular magnetic field morphology of the white dwarf WD 1953-011: evidence for a large-scale magnetic flux tube?
- RISE: a fast-readout imager for exoplanet transit timing
- Single magnetic white dwarfs with Balmer emission lines: A small class with consistent physical characteristics as possible signposts for close-in planetary companions
- Monitoring and modelling of white dwarfs with extremely weak magnetic fields
- Evolution of Magnetized White Dwarf Binaries to Type Ia Supernovae
- Intermediate-Mass Stars Become Magnetic White Dwarfs