English

A Bayesian Kepler Periodogram detects a second planet in HD 208487

Astrophysics 2008-11-26 v2

Abstract

An automatic Bayesian Kepler periodogram has been developed for identifying and characterizing multiple planetary orbits in precision radial velocity data. The periodogram is powered by a parallel tempering MCMC algorithm which is capable of efficiently exploring a multi-planet model parameter space. The periodogram employs an alternative method for converting the time of an observation to true anomaly that enables it to handle much larger data sets without a significant increase in computation time. Improvements in the periodogram and further tests using data from HD 208487 have resulted in the detection of a second planet with a period of 9099282909_{-92}^{82}d, an eccentricity of 0.370.200.260.37_{-0.20}^{0.26}, a semi-major axis of 1.870.140.131.87_{-0.14}^{0.13} AU and an Msini=0.450.110.13M \sin i = 0.45_{-0.11}^{0.13} MJ_{\rm J}. The revised parameters of the first planet are period =129.8±0.4= 129.8\pm 0.4d, eccentricity =0.20±0.09= 0.20\pm 0.09, semi-major axis =0.51±0.02= 0.51\pm0.02 AU and Msini=0.41±0.05M \sin i = 0.41\pm0.05 MJ_{\rm J}. Particular attention is paid to several methods for calculating the model marginal likelihood which is used to compare the probabilities of models with different numbers of planets.

Keywords

Cite

@article{arxiv.astro-ph/0609229,
  title  = {A Bayesian Kepler Periodogram detects a second planet in HD 208487},
  author = {P. C. Gregory},
  journal= {arXiv preprint arXiv:astro-ph/0609229},
  year   = {2008}
}

Comments

An extended version of the paper with 3 more figures, one extra table, and typos corrected

R2 v1 2026-07-22T09:12:36.985Z