The effects of viewing angle on the mass distribution of exoplanets
arXiv:1207.4477 · doi:10.1088/0004-637X/756/2/177
Abstract
We present a mathematical method to statistically decouple the effects of unknown inclination angles on the mass distribution of exoplanets that have been discovered using radial-velocity techniques. The method is based on the distribution of the product of two random variables. Thus, if one assumes a true mass distribution, the method makes it possible to recover the observed distribution. We compare our prediction with available radial-velocity data. Assuming the true mass function is described by a power-law, the minimum mass function that we recover proves a good fit to the observed distribution at both mass ends. In particular, it provides an alternative explanation for the observed low-mass decline, usually explained as sample incompleteness. In addition, the peak observed near the the low-mass end arises naturally in the predicted distribution as a consequence of imposing a low-mass cutoff in the true-distribution. If the low-mass bins below 0.02 M_J are complete, then the mass distribution in this regime is heavily affected by the small fraction of lowly inclined interlopers that are actually more massive companions. Finally, we also present evidence that the exoplanet mass distribution changes form towards low-mass, implying that a single power law may not adequately describe the sample population.
ApJ, accepted
References in corpus (2)
Cited by in corpus (16)
- Imaging Extrasolar Giant Planets
- Bayesian search for low-mass planets around nearby M dwarfs. Estimates for occurrence rate based on global detectability statistics
- The effect of nuclear gas distribution on the mass determination of supermassive black holes
- Orbital and physical properties of planets and their hosts: new insights on planet formation and evolution
- New Planetary Systems from the Calan-Hertfordshire Extrasolar Planet Search
- A Posteriori Transit Probabilities
- A Hot Uranus Orbiting the Super Metal-rich Star HD77338 and the Metallicity - Mass Connection
- The test case of HD26965: difficulties disentangling weak Doppler signals from stellar activity
- True Masses of Radial-Velocity Exoplanets
- Parent Stars of Extrasolar Planets. XV. Host Star Rotation Revisited with {\it Kepler} Data
- The Observed Distribution of Spectroscopic Binaries from the Anglo-Australian Planet Search
- BEER analysis of Kepler and CoRoT light curves. III. Spectroscopic confirmation of seventy new beaming binaries discovered in CoRoT light curves
- Observable Predictions from Perturber-coupled High-eccentricity Tidal Migration of Warm Jupiters
- RV-exoplanet eccentricities: Good, Beta, and Best
- Prospects for detecting the astrometric signature of Barnard's Star b
- TOI-333b: A Neptune Desert planet around a F7V star