2004A&A...419..673V


Query : 2004A&A...419..673V

2004A&A...419..673V - Astronomy and Astrophysics, volume 419, 673-683 (2004/5-4)

Is T Leonis a superoutbursting intermediate polar?

VRIELMANN S., NESS J.-U. and SCHMITT J.H.M.M.

Abstract (from CDS):

We present an XMM-Newton analysis of the cataclysmic variable T Leo. The X-ray light curve shows sinusoidal variation on a period Px equal to 0.89+0.14–0.10 times the previously spectroscopically determined orbital period. Furthermore, we find a signal in the power spectrum at 414s that could be attributed to the spin period of the white dwarf. If true, T Leo would be the first confirmed superoutbursting intermediate polar (IP). The spin profile is double-peaked with a peak separation of about 1/3 spin phases. This appears to be a typical feature for IPs with a small magnetic field and fast white dwarf rotation. An alternative explanation is that the 414s signal is a Quasi-periodic Oscillation (QPO) that is caused by mass transfer variation from the secondary, a bright region (``blob'') rotating in the disc at a radius of approximately 9Rwd or - more likely - a travelling wave close to the inner disc edge of a dwarf nova with a low field white dwarf. The XMM-Newton RGS spectra reveal double peaked emission for the O VIII Ly α line. Scenarios in the IP and dwarf nova model are discussed (an emitting ring in the disc, bright X-ray spot on disc edge, or emitting accretion funnels), but the intermediate polar model is favoured. Supported is this idea by the finding that only the red peak appears to be shifted and the ``blue'' peak is compatible with the rest wavelength. The red peak thus is caused by emission from the northern accretion spot when it faces the observer. Instead, the peak at the rest wavelength is caused when the southern accretion funnel is visible just on the lower edge of the white dwarf - with the velocity of the accreting material being perpendicular to the line of sight.

Abstract Copyright:

Journal keyword(s): stars: binaries: close - stars: novae, cataclysmic variables - stars: individual: T Leo - X-rays: stars - accretion, accretion discs

Simbad objects: 7

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Number of rows : 7
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 V* HT Cas CV* 01 10 13.1213394144 +60 04 35.489642700     14.10     M5.5e 388 0
2 V* VZ Pyx CV* 08 59 19.8388698120 -24 28 55.257493908     14.08     ~ 63 0
3 V* QZ Vir CV* 11 38 26.8241432424 +03 22 07.110298596     15.81     ~ 255 1
4 V* AL Com CV* 12 32 25.7951754648 +14 20 42.292188276     16.2     ~ 245 0
5 V* EX Hya CV* 12 52 24.2222471899 -29 14 55.999766523   13.51 13.49 13.55   M5-6V 694 0
6 V* WZ Sge CV* 20 07 36.5037622512 +17 42 14.733254952   15.30 15.20     DAepv 946 0
7 V* SS Cyg CV* 21 42 42.8034497592 +43 35 09.867842484 11.07 12.651 12.032 9.326   K5V 1290 1

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