Cyclotron modeling phase-resolved infrared spectroscopy of polars I: EF Eridani
arXiv:0709.0978 · doi:10.1086/523632
Abstract
We present phase-resolved low resolution infrared spectra of the polar EF Eridani obtained over a period of 2 years with SPEX on the IRTF. The spectra, covering the wavelength range 0.8 to 2.4 microns, are dominated by cyclotron emission at all phases. We use a ``Constant Lambda'' prescription to attempt to model the changing cyclotron features seen in the spectra. A single cyclotron emission component with B = 12.6 MG, and a plasma temperature of kT = 5.0 keV, does a reasonable job in matching the features seen in the H and K bands, but fails to completely reproduce the morphology shortward of 1.6 microns. We find that a two component model, where both components have similar properties, but whose contributions differ with viewing geometry, provides an excellent fit to the data. We discuss the implications of our models and compare them with previously published results. In addition, we show that a cyclotron model with similar properties to those used for modeling the infrared spectra, but with a field strength of B = 115 MG, can explain the GALEX observations of EF Eri.
25 pages, 5 figures, to appear in ApJ
References in corpus (2)
Cited by in corpus (10)
- DAHe white dwarfs from the DESI survey
- On accretion in the eclipsing polar BS Tri
- GALEX, Optical and IR Light Curves of MQ Dra: UV Excesses at Low Accretion Rates
- Cyclotron Modeling Phase-Resolved Infrared Spectroscopy of Polars III: AM Herculis and ST Leo Minoris
- CSS1603+19: a low-mass polar near the cataclysmic variable period minimum
- Cyclotron emitting magnetic white dwarfs in post common envelope binaries discovered with the Zwicky Transient Facility
- Discovery and characterization of ZTF J0112+5827: An 80.9-minute polar with strong cyclotron features
- Optical study of the polar BM CrB in low accretion state
- Proving strong magnetic fields near to the central black hole in the quasar PG0043+039 via cyclotron lines
- Optical Spectroscopy of the Most Compact Accreting Binary Harboring a Magnetic White Dwarf and a Hydrogen-rich Donor