High-Speed Energy-Resolved STJ Photometry of the Eclipsing Binary UZ For
arXiv:astro-ph/0101201 · doi:10.1046/j.1365-8711.2001.04325.x
Abstract
We present high time-resolution optical photometry of the eclipsing binary UZ For using a superconducting tunnel junction (STJ) device, a photon-counting array detector with intrinsic energy resolution. Three eclipses of the 18 mag 126.5 min orbital binary were observed using a array of Tantalum STJs at the 4.2-m William Herschel Telescope on La Palma. The detector presently provides individual photon arrival time accuracy to about 5 s, and a wavelength resolution of about 60 nm at 500 nm, with each array element capable of counting up to 5000 photons s. The data allow us to place accurate constraints on the accretion geometry from our time- and spectrally-resolved monitoring, especially of the eclipse ingress and egress. We find that there are two small accretion regions, located close to the poles of the white dwarf. The positions of these are accurately constrained, and show little movement from eclipse to eclipse, even over a number of years. The colour of the emission from the two regions appears similar, although their X-ray properties are known to be significantly different: we argue that the usual accretion shock may be absent at the non-X-ray emitting region, and instead the flow here interacts directly with the white dwarf surface; alternatively, a special grazing occultation of this region is required. There is no evidence for any quasi-periodic oscillations on time-scales of the order of seconds, consistent with relatively stable cyclotron cooling in each accretion region.
Accepted by MNRAS: 11 pages, 8 figures
Cited by in corpus (25)
- Optical Interferometry in Astronomy
- First science with SALT: peering at the accreting polar caps of the eclipsing polar SDSS J015543.40+002807.2
- Origin of apparent period variations in eclipsing post-common-envelope binaries
- Possible detection of two giant extrasolar planets orbiting the eclipsing polar UZ Fornacis
- The orbital period analyses for two cataclysmic variables: UZ Fornacis and V348 Puppis inside Period Gap
- High-speed energy-resolved STJ photometry of the eclipsing dwarf nova IY UMa
- Quasi-periodic oscillations in accreting magnetic white dwarfs I. Observational constraints in X-ray and optical
- STJ Observations of the Eclipsing Polar HU Aqr
- XMM-Newton observations of the eclipsing polar V2301 Oph
- Direct determination of quasar redshifts
- XMM-Newton observes flaring in the polar UZ For during a low state
- Discovery of eRASSt J192932.9-560346: a bright, two-pole accreting, eclipsing polar
- Variability of the Accretion Stream in the Eclipsing Polar EP Dra
- A Concept for an STJ-based Spectrograph
- Analysis of astronomical data from optical superconducting tunnel junctions
- High-speed, energy-resolved, STJ observations of the AM Her system V2301 Oph
- A burst from the direction of UZ Fornacis with XMM-Newton
- Temperature determination via STJ optical spectroscopy
- UBVRI photopolarimetry of the long period eclipsing AM Herculis binary V1309
- High-speed photometry of the eclipsing polar UZ Fornacis
- Indirect imaging of the accretion stream in eclipsing polars IV: V895 Cen
- Imaging of single infrared, optical, and ultraviolet photons using distributed tunnel junction readout on superconducting absorbers
- First results of a cryogenic optical photon counting imaging spectrometer using a DROID array
- Accretion stream mapping with genetically modified "fire-flies"
- A spectroscopic, photometric, polarimetric and radio study of the eclipsing polar UZ Fornacis: the first simultaneous SALT and MeerKAT observations