Colin Littlefield
Quasi-periodic Oscillations in the TESS Light Curve of TX Col, a Diskless Intermediate Polar on the Precipice of Forming an Accretion Disk
Littlefield, Colin; Scaringi, Simone; Garnavich, Peter; Szkody, Paula; Kennedy, Mark R.; Iłkiewicz, Krystian; Mason, Paul A.
Authors
Dr Simone Scaringi simone.scaringi@durham.ac.uk
Associate Professor
Peter Garnavich
Paula Szkody
Mark R. Kennedy
Krystian Iłkiewicz
Paul A. Mason
Abstract
One of the fundamental properties of an intermediate polar is the dynamical nature of the accretion flow as it encounters the white dwarf’s (WD’s) magnetosphere. Many works have presumed a dichotomy between disk-fed accretion, in which the WD accretes from a Keplerian disk, and stream-fed accretion, in which the matter stream from the donor star directly impacts the WD’s magnetosphere without forming a disk. However, there is also a third, poorly understood regime in which the accretion flow consists of a torus of diamagnetic blobs that encircles the WD. This mode of accretion is expected to exist at mass-transfer rates below those observed during disk-fed accretion, but above those observed during pure stream-fed accretion. We invoke the diamagnetic-blob regime to explain the exceptional Transiting Exoplanet Survey Satellite light curve of the intermediate polar TX Col, which transitioned into and out of states of enhanced accretion during Cycles 1 and 3. Power-spectral analysis reveals that the accretion was principally stream fed. However, when the mass-transfer rate spiked, large-amplitude quasiperiodic oscillations (QPOs) abruptly appeared and dominated the light curve for weeks. The QPOs have two striking properties: they appear in a stream-fed geometry at elevated accretion rates, and they occur preferentially within a well-defined range of frequencies (∼10–25 cycle day−1 ). We propose that during episodes of enhanced accretion, a torus of diamagnetic blobs forms near the binary’s circularization radius and that the QPOs are beats between the white dwarf’s spin frequency and unstable blob orbits within the WD’s magnetosphere. We discuss how such a torus could be a critical step in producing an accretion disk in a formerly diskless system.
Citation
Littlefield, C., Scaringi, S., Garnavich, P., Szkody, P., Kennedy, M. R., Iłkiewicz, K., & Mason, P. A. (2021). Quasi-periodic Oscillations in the TESS Light Curve of TX Col, a Diskless Intermediate Polar on the Precipice of Forming an Accretion Disk. Astronomical Journal, 162(2), Article 49. https://doi.org/10.3847/1538-3881/ac062b
Journal Article Type | Article |
---|---|
Acceptance Date | May 26, 2021 |
Online Publication Date | Jul 8, 2021 |
Publication Date | 2021 |
Deposit Date | Oct 14, 2021 |
Publicly Available Date | Oct 14, 2021 |
Journal | The Astronomical Journal |
Print ISSN | 0004-6256 |
Electronic ISSN | 1538-3881 |
Publisher | IOP Publishing |
Peer Reviewed | Peer Reviewed |
Volume | 162 |
Issue | 2 |
Article Number | 49 |
DOI | https://doi.org/10.3847/1538-3881/ac062b |
Public URL | https://durham-repository.worktribe.com/output/1232093 |
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Copyright Statement
© 2021. The American Astronomical Society. All rights reserved.
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