The Temperature versus Orbital Period relation of AM CVns: Insights from their Donors
arXiv:2412.05442 · doi:10.3847/2515-5172/ad9a64
Abstract
We studied the spectral energy distribution (SED) of 22 known AM~CVns with orbital periods () larger than 35~min using multiwavelength public photometric data to estimate the effective temperature of the accreting white dwarf. We find an infrared (IR) excess in all systems when compared to a single blackbody, both when the disk should be extended and when it should be truncated by the accretor's magnetic field. This suggests a dominant contribution from the donor to the IR flux. When fitting two blackbodies, the temperature of the hot component decreases with , as expected by evolutionary models. Temperatures for systems with are consistent with models. Systems with have higher temperatures than expected. The second blackbody temperature does not correlate with .
3 Pages, 1 Figure, Published RNAAS
References in corpus (9)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Long-term Photometric Behavior of Outbursting AM CVn Systems
- Discovery and characterization of five new eclipsing AM CVn systems
- Spectroscopic and Photometric Periods of Six Ultracompact Accreting Binaries
- Reversing the verdict: Cataclysmic variables could be the dominant progenitors of AM CVn binaries after all
- Mass Transfer and Stellar Evolution of the White Dwarfs in AM CVn Binaries
- The outburst of a 60 min AM CVn reveals peculiar color evolution: implications for outbursts in long period double white dwarfs
- The Superoutburst Duration versus Orbital Period Relation for AM CVn stars
- The Fast Evolving, Tremendous and Blue Superoutburst in ASASSN-21au Reveals a Dichotomy in the Outbursts of Long-period AM CVns