Time-Resolved HST Spectroscopy of Four Eclipsing Magnetic Cataclysmic Variables
arXiv:astro-ph/0010011 · doi:10.1086/318691
Abstract
Time-resolved HST UV eclipse spectrophotometry is presented for the magnetic CVs V1309 Ori, MN Hya, V2301 Oph, and V1432 Aql. Separation of the light curves into wavebands allows the multiple emission components to be distinguished. Photospheric hot spots are detected in V1309 Ori and V2301 Oph. The emission- line spectra of V1309 Ori and MN Hya are unusual, with the strength of N V 1240 and N IV 1718 suggesting an overabundance of nitrogen. Three epochs of observation of the asynchronous V1432 Aql cover ~1/3 of a 50-day lap cycle between the white dwarf spin and binary orbit. The light curves vary from epoch to epoch and as a function of waveband. The dereddened UV spectrum is extremely bright and the spectral energy distribution coupled with the duration of eclipse ingress indicate that the dominant source of energy is a hot (T~35,000K) white dwarf. Undiminished line emission through eclipse indicates that the eclipse is caused by the accretion stream, not the secondary star. The hot white dwarf, combined with its current asynchronous nature and rapid timescale for relocking, suggests that V1432 Aql underwent a nova eruption in the past 75-150 yr. The reversed sense of asynchronism, with the primary star currently spinning up toward synchronism, is not necessarily at odds with this scenario, if the rotation of the magnetic white dwarf can couple to the ejecta during the wind phase of the eruption.
To appear in ApJ Part 1; 25 pages, 12 figures
Cited by in corpus (24)
- Magnetic White Dwarfs
- A Volume Limited Sample of Cataclysmic Variables from DR2: Space Density and Population Properties
- Anomalous ultraviolet line flux ratios in the cataclysmic variables 1RXSJ232953.9+062814, CE315, BZ UMa and EY Cyg observed with HST/STIS
- AE Aquarii: how CVs descend from supersoft binaries
- Novae With Long-Lasting Supersoft Emission That Drive a High Accretion Rate
- V1460 Her: A fast spinning white dwarf accreting from an evolved donor star
- Unravelling the Puzzle of the Eclipsing Polar SDSSJ 015543.40+002807.2 with XMM and Optical Photometry/Spectropolarimetry
- System parameters of the long-period polar V1309 Ori
- Infrared Spectroscopic Observations of the Secondary Stars of Short Period Sub-Gap Cataclysmic Variables
- X-ray Variability of the Magnetic Cataclysmic Variable V1432 Aql and the Seyfert Galaxy NGC 6814
- Nova Sagittarii 1998 (V4633 Sgr) - a permanent superhump system or an asynchronous polar?
- The Short Period Supersoft Source in M31
- Nova-produced Common Envelope: Source of the Non-solar Abundances and an Additional Frictional Angular Momentum Loss in Cataclysmic Variables
- X-Ray Emission and Optical Polarization of V1432 Aquilae: An Asynchronous Polar
- The surprising Far-UV spectrum of the polar BY Camelopardalis
- XMM-Newton observation of the long-period polar V1309 Ori: The case for pure blobby accretion
- High-speed, energy-resolved, STJ observations of the AM Her system V2301 Oph
- Detection of orbital and superhump periods in Nova V2574 Ophiuchi (2004)
- UBVRI photopolarimetry of the long period eclipsing AM Herculis binary V1309
- On the Effect of Explosive Thermonuclear Burning on the Accreted Envelopes of White Dwarfs in Cataclysmic Variables
- Revisiting the extremely long-period cataclysmic variables V479 Andromedae and V1082 Sagitarii
- The secondary star and distance of the polar V1309 Ori
- Photometric Analysis of the eclipsing Polar MN Hya
- Revisiting the X-ray Emission of the Asynchronous Polar V1432 Aql