Magnetically gated accretion in an accreting 'non-magnetic' white dwarf
arXiv:1712.04949 · doi:10.1038/nature24653
Abstract
White dwarfs are often found in binary systems with orbital periods ranging from tens of minutes to hours in which they can accrete gas from their companion stars. In about 15% of these binaries, the magnetic field of the white dwarf is strong enough ( Gauss) to channel the accreted matter along field lines onto the magnetic poles. The remaining systems are referred to as "non-magnetic", since to date there has been no evidence that they have a dynamically significant magnetic field. Here we report an analysis of archival optical observations of the "non-magnetic" accreting white dwarf in the binary system MV Lyrae (hereafter MV Lyr), whose lightcurve displayed quasi-periodic bursts of minutes duration every hours. The observations indicate the presence of an unstable magnetically-regulated accretion mode, revealing the existence of magnetically gated accretion, where disk material builds up around the magnetospheric boundary (at the co-rotation radius) and then accretes onto the white dwarf, producing bursts powered by the release of gravitational potential energy. We infer a surface magnetic field strength for the white dwarf in MV Lyr between Gauss, too low to be detectable by other current methods. Our discovery provides a new way of studying the strength and evolution of magnetic fields in accreting white dwarfs and extends the connections between accretion onto white dwarfs, young stellar objects and neutron stars, for which similar magnetically gated accretion cysles have been identified.
7 pages, 4 figures. Accepted in Nature
References in corpus (4)
- Modifying the Standard Disk Model for the Ultraviolet Spectral Analysis of Disk-dominated Cataclysmic Variables. I. The Novalikes MV Lyrae, BZ Camelopardalis, and V592 Cassiopeiae
- A population study of type II bursts in the Rapid Burster
- Wave mediated angular momentum transport in astrophysical boundary layers
- Rms-flux relation and fast optical variability simulations of the nova-like system MV Lyr
Cited by in corpus (20)
- A catalogue of cataclysmic variables from 20 years of the Sloan Digital Sky Survey with new classifications, periods, trends and oddities
- Localised thermonuclear bursts from accreting magnetic white dwarfs
- Accretion Flows in Nonmagnetic White Dwarf Binaries as Observed in X-rays
- Evidence for mass accretion driven by spiral shocks onto the white dwarf in SDSS J123813.73-033933.0
- Signs of accretion in the white dwarf + brown dwarf binary NLTT5306
- Quasi-periodic oscillations in the TESS light curve of TX Col, a diskless intermediate polar on the precipice of forming an accretion disk
- An accreting white dwarf displaying fast transitional mode switching
- Rapid bursts of magnetically gated accretion in the intermediate polar V1025 Cen
- Hitting a New Low: The Unique 28 h Cessation of Accretion in the TESS Light Curve of YY Dra (DO Dra)
- Magnetically-gated accretion model: application to short bursts in the intermediate polar V1223 Sgr
- DW Cnc: a micronova with a negative superhump and a flickering spin
- Luminous Optical and X-ray Flaring of the Putative Redback Millisecond Pulsar 1FGL J0523.52529
- Constraining the magnetic field on white dwarf surfaces; Zeeman effects and fine structure constant variation
- The Peculiar Bursting Nature of CP Pup
- Alternation of the flickering morphology between the high and low state in MV Lyr
- Searching for Diamagnetic Blob Accretion in the 74 day K2 Observation of V2400 Ophiuchi
- Recurrent mini-outbursts and a magnetic white dwarf in the symbiotic system FN Sgr
- Searching for similarities in the accretion flow of Seyfert 1 galaxies and cataclysmic variables based on flare profiles of IRAS 13224-3809, 1H 0707-495, Mrk 766 and MV Lyr
- Investigating the low-flux states in six Intermediate Polars
- Statistical properties of type-II bursts in Rapid Burster observed with Insight-HXMT