Spitzer Space Telescope observations of magnetic cataclysmic variables: possibilities for the presence of dust in polars
arXiv:astro-ph/0701307 · doi:10.1086/512797
Abstract
We present Spitzer Space Telescope photometry of six short-period polars, EF Eri, V347 Pav, VV Pup, V834 Cen, GG Leo, and MR Ser. We have combined the Spitzer Infrared Array Camera (3.6 -8.0 microns) data with the 2MASS J, H, K_s photometry to construct the spectral energy distributions of these systems from the near- to mid-IR (1.235 - 8 microns). We find that five out of the six polars have flux densities in the mid-IR that are substantially in excess of the values expected from the stellar components alone. We have modeled the observed SEDs with a combination of contributions from the white dwarf, secondary star, and either cyclotron emission or a cool, circumbinary dust disk to fill in the long-wavelength excess. We find that a circumbinary dust disk is the most likely cause of the 8 micron excess in all cases, but we have been unable to rule out the specific (but unlikely) case of completely optically thin cyclotron emission as the source of the observed 8 micron flux density. While both model components can generate enough flux at 8 microns, neither dust nor cyclotron emission alone can match the excess above the stellar components at all wavelengths. A model combining both cyclotron and dust contributions, possibly with some accretion-generated flux in the near-IR, is probably required, but our observed SEDs are not sufficiently well-sampled to constrain such a complicated model. If the 8 micron flux density is caused by the presence of a circumbinary dust disk, then our estimates of the masses of these disks are many orders of magnitude below the mass required to affect CV evolution.
58 pages, 14 figures, ApJ accepted
References in corpus (8)
- Spitzer/IRAC Photometry of M, L, and T Dwarfs
- Keplerian discs around post-AGB stars: a common phenomenon?
- Mid-Infrared Emission from Dust around Quiescent Low-Mass X-ray Binaries
- First Spitzer Space Telescope Observations of Magnetic Cataclysmic Variables: Evidence for Excess Emission at 3--8 microns
- Mass Determination and Detection of the Onset of Chromospheric Activity for the Sub-Stellar Object in EF Eridani
- Low State, Phase-Resolved IR Spectroscopy of VV Puppis
- Polars Changing State: Multiwavelength Long Term Photometry and Spectroscopy of QS Tel, V834 Cen, and BL Hyi
- Spitzer Observations of Var Her 04: Possible Detection of Dust Formation in a Super-Outbursting TOAD
Cited by in corpus (20)
- A Dusty Component to the Gaseous Debris Disk around the White Dwarf SDSS J1228+1040
- The space density of magnetic cataclysmic variables
- The WIRED Survey. IV. New Dust Disks from the McCook & Sion White Dwarf Catalog
- A Near-Infrared Spectroscopic Study of the Accreting Magnetic White Dwarf SDSS J121209.31+013627.7 and its Substellar Companion
- The cataclysmic variable QZ Lib: a period bouncer
- Long-term multi-wavelength studies of GRS 1915+105 I. A high-energy and mid-infrared focus with RXTE, INTEGRAL, and Spitzer
- Herschel Observations of Cataclysmic Variables
- "Dark Matter" in Accretion Disks
- Observations of V592 Cassiopeiae with the Spitzer Space Telescope - Dust in the Mid-Infrared
- New Complexities in the Low-State line profiles of AM Herculis
- The Mid-Infrared Spectrum of the Short Orbital Period Polar EF Eridani from the Spitzer Space Telescope
- The "DODO" survey I: limits on ultra-cool substellar and planetary-mass companions to van Maanen's star (vMa 2)
- Angular Momentum Loss Mechanisms in Cataclysmic Variables below the Period Gap
- X-Shooting EF Eridani: further evidence for a massive white dwarf and a sub-stellar secondary
- Formation of ultra-compact X-ray binaries through circum-binary disk-driven mass transfer
- Swift J2218.4+1925: a new hard X-ray selected Polar observed with XMM-Newton
- The WIRED Survey III: An Infrared Excess around the Eclipsing Post-Common Envelope Binary SDSS J030308.35+005443.7
- Spitzer Space Telescope Observations of the Magnetic Cataclysmic Variable AE Aqr
- Can angular momentum loss cause the period change of NN Ser?
- CSS091109:035759+102943 - a candidate polar