Andrew Langford
Searching for Diamagnetic Blob Accretion in the 74 day K2 Observation of V2400 Ophiuchi
Langford, Andrew; Littlefield, Colin; Garnavich, Peter; Kennedy, Mark R.; Scaringi, Simone; Szkody, Paula
Authors
Colin Littlefield
Peter Garnavich
Mark R. Kennedy
Dr Simone Scaringi simone.scaringi@durham.ac.uk
Associate Professor
Paula Szkody
Abstract
Since its discovery in 1995, V2400 Ophiuchi (V2400 Oph) has stood apart from most known intermediate polar cataclysmic variables due to its proposed magnetic field strength (9–27 MG) and diskless accretion. To date, the exact accretion mechanism of the system is still unknown, and standard accretion models fail to accurately predict the peculiar behavior of its light curve. We present the K2 Campaign 11 light curve of V2400 Oph recording 74.19 days of photometric data cadenced at 1 minute. The light curve is dominated by aperiodic flickering and quasiperiodic oscillations, which make the beat and spin signals inconspicuous on short timescales. Notably, a log–log full power spectrum shows a break frequency at ∼102 cycles d−1 similar to some disk-fed systems. Through power-spectral analysis, the beat and spin periods are measured as 1003.4 ± 0.2 s and 927.7 ± 0.1 s, respectively. A power spectrum of the entire K2 observation demonstrates beat period dominance. However, time-resolved power spectra reveal a strong dependence between observation length and the dominant frequency of the light curve. For short observations (2–12 hr) the beat, spin, or first beat harmonic can be observed as the dominant periodic signal. Such incoherence and variability indicate a dynamical accretion system more complex than current intermediate polar theories can explain. We propose that a diamagnetic blob accretion model may serve as a plausible explanation for the accretion mechanism.
Citation
Langford, A., Littlefield, C., Garnavich, P., Kennedy, M. R., Scaringi, S., & Szkody, P. (2022). Searching for Diamagnetic Blob Accretion in the 74 day K2 Observation of V2400 Ophiuchi. Astronomical Journal, 163(1), https://doi.org/10.3847/1538-3881/ac3010
Journal Article Type | Article |
---|---|
Acceptance Date | Oct 12, 2021 |
Online Publication Date | Dec 10, 2021 |
Publication Date | Jan 1, 2022 |
Deposit Date | Jan 17, 2022 |
Publicly Available Date | Jan 17, 2022 |
Journal | The Astronomical Journal |
Print ISSN | 0004-6256 |
Electronic ISSN | 1538-3881 |
Publisher | IOP Publishing |
Peer Reviewed | Peer Reviewed |
Volume | 163 |
Issue | 1 |
DOI | https://doi.org/10.3847/1538-3881/ac3010 |
Public URL | https://durham-repository.worktribe.com/output/1216783 |
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