The Beam Balance -- Measuring Binary Systems via Relativistic Beaming Signals from Stars and their Companions
arXiv:1908.04602 · doi:10.1093/mnras/stz2332
Abstract
In this paper I show that the concept of relativistic beaming -- the process by which light emitted by a fast moving sources is lensed towards the direction of motion -- can be easily extended to model the signal from both the star and any secondary companions. Most companions will be cooler and less massive than their host star. Their lower mass leads to faster orbital velocities, and thus a potentially larger beaming effect. The lower temperature will mean that most of their light is emitted at longer wavelengths, where the relative photometric dominance of the primary is reduced. Thus for some systems, the secondary companion can be the main contributor to observed relativistic beaming signals at long wavelengths. Furthermore, if the system is observed over a range of wavelengths we can independently constrain the temperature of the companion, and the mass and radius ratio of the binary. To conclude I discuss the current and future observational prospects of this signal, using the properties of known exoplanets to show that such a signal may be observable by upcoming surveys.
7 pages, 9 figures, 1 appendix, accepted for publication in MNRAS
References in corpus (10)
- The Transiting Exoplanet Survey Satellite
- NGTS-1b: A hot Jupiter transiting an M-dwarf
- New Avenues for Thermal Inversions in hot Jupiters
- Prospects of Finding Detached Black Hole-Star Binaries with TESS
- Robust, open-source removal of systematics in Kepler data
- Kepler's Dark Worlds: a Low Albedo for an Ensemble of Neptunian and Terran Exoplanets
- The Weird Detector: Flagging periodic, coherent signals of arbitrary shape in time series photometry
- The Telltale Heartbeat: Detection and Characterization of Eccentric Orbiting Planets via Tides on their Host Star
- Finding the Needle in a Haystack: Detrending Photometric Timeseries Data of Strictly Periodic Astrophysical Objects
- Higher Order Harmonics in the Light Curves of Eccentric Planetary Systems