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Discovery of Fourier-dependent time lags in cataclysmic variables

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Scaringi, S., Kording, E., Groot, P. J., Uttley, P., Marsh, Tom, Knigge, C., Maccarone, T. and Dhillon, V. S. (2013) Discovery of Fourier-dependent time lags in cataclysmic variables. Monthly Notices of the Royal Astronomical Society, 431 (3). pp. 2535-2541. doi:10.1093/mnras/stt347 ISSN 0035-8711.

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Official URL: http://dx.doi.org/10.1093/mnras/stt347

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Abstract

We report the first study of Fourier-frequency-dependent coherence and phase/time lags at optical wavelengths of cataclysmic variables (MV Lyr and LU Cam) displaying typical flickering variability in white light. Observations were performed on the William Herschel Telescope using ULTRACAM. Light curves for both systems have been obtained with the SDSS filters u′, g′ and r′ simultaneously with cadences in the range ≈0.5–2 s, and allow us to probe temporal frequencies between ≈10−3 and ≈1 Hz. We find high levels of coherence between the u′, g′ and r′ light curves up to at least ≈10−2 Hz. Furthermore, we detect red/negative lags where the redder bands lag the bluer ones at the lowest observed frequencies. For MV Lyr time lags up to ≈3 s are observed, whilst LU Cam displays larger time lags of ≈10 s. Mechanisms which seek to explain red/negative lags observed in X-ray binaries and active galactic nuclei involve reflection of photons generated close to the compact object on to the surface layers of the accretion disc, where the lag delay is simply the light travel time from the emitting source to the reflecting accretion disc area. Although this could be a viable explanation for the lags observed in MV Lyr, the lags observed in LU Cam are too large to be explained by reflection from the disc and/or the donor star. We suggest reprocessing on the thermal time-scale of boundary layer photons on to the accretion disc as a possible mechanism to explain the lags observed in accreting white dwarfs, or reverse (inside-out) shocks within the disc travelling through cooler disc regions as they move outwards.

Item Type: Journal Article
Divisions: Faculty of Science, Engineering and Medicine > Science > Physics
Journal or Publication Title: Monthly Notices of the Royal Astronomical Society
Publisher: Oxford University Press
ISSN: 0035-8711
Official Date: 21 May 2013
Dates:
DateEvent
21 May 2013Published
20 March 2013Available
21 February 2013Accepted
Volume: 431
Number: 3
Page Range: pp. 2535-2541
DOI: 10.1093/mnras/stt347
Status: Peer Reviewed
Publication Status: Published
Access rights to Published version: Restricted or Subscription Access

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