Efficient identification of exoplanetary transit candidates from SuperWASP light curves

Transiting extrasolar planets constitute only a small fraction of the range of stellar systems found to display periodic, shallow dimmings in wide-field surveys employing small-aperture A camera arrays. Here we present an efficient selection strategy for follow-up observations, derived from analysis of the light curves of a sample of 67 SuperWASP targets that passed the selection tests we used in earlier papers, but which have subsequently been identified either as planet hosts or as astrophysical false positives. We determine the system parameters using Markov-chain Monte Carlo analysis of the SuperWASP light curves. We use a constrained optimization of X 2 combined with a Bayesian prior based on the main-sequence mass and radius expected from the Two Micron All Sky Survey J - H colour. The Bayesian nature of the analysis allows us to quantify both the departure of the host star from the main-sequence mass-radius relation and the probability that the companion radius is less than 1.5 Jupiter radii. When augmented by direct fight-curve analyses that detect binaries with unequal primary and secondary eclipses, and objects with aperture blends that are resolved by SuperWASP, we find that only 13 of the original 67 stars, including the three known planets in the sample, would qualify for follow-up. This suggests that planet discovery 'hit rates' better than one-in-five should be achievable. In addition, the stellar binaries that qualify are likely to have astrophysically interesting stellar or substellar secondaries.

[1]  J. Valenti,et al.  Spectroscopic Properties of Cool Stars (SPOCS). I. 1040 F, G, and K Dwarfs from Keck, Lick, and AAT Planet Search Programs , 2005 .

[2]  B. Paczyński,et al.  Ellipsoidal Variability in the OGLE Planetary Transit Candidates , 2003, astro-ph/0302175.

[3]  L. Hebb,et al.  WASP-1b and WASP-2b: Two new transiting exoplanets detected with SuperWASP and SOPHIE , 2006, astro-ph/0609688.

[4]  O. Tamuz,et al.  Photometric follow-up of the transiting planet WASP-1b , 2006, astro-ph/0610556.

[5]  P. C. Gregory A Bayesian Kepler periodogram detects a second planet in HD 208487 , 2006 .

[6]  Michel Mayor,et al.  The missing link: A 4-day period transiting exoplanet around OGLE-TR-111 , 2004 .

[7]  William H. Press,et al.  Book-Review - Numerical Recipes in Pascal - the Art of Scientific Computing , 1989 .

[8]  A. Collier Cameron,et al.  WASP-1: a lithium- and metal-rich star with an oversized planet* , 2007, 0705.1677.

[9]  E. Friel,et al.  A catalogue of [Fe/H] determinations: 1996 edition , 1992, astro-ph/9705206.

[10]  Tsevi Mazeh,et al.  Correcting systematic effects in a large set of photometric light curves , 2005, astro-ph/0502056.

[11]  A. J. Drake On the Selection of Photometric Planetary Transits , 2003 .

[12]  E. Agol,et al.  Analytic Light Curves for Planetary Transit Searches , 2002, astro-ph/0210099.

[13]  Saurabh Jha,et al.  A Transiting Extrasolar Giant Planet around the Star OGLE-TR-10 , 2004 .

[14]  C. Moutou,et al.  Radius and mass of a transiting M dwarf near the hydrogen-burning limit. OGLE-TR-123 , 2006 .

[15]  Andrew Gould,et al.  Transit Target Selection Using Reduced Proper Motions , 2002 .

[16]  David Charbonneau,et al.  TrES-3: A Nearby, Massive, Transiting Hot Jupiter in a 31 Hour Orbit , 2007, 0705.2004.

[17]  D. Queloz,et al.  Two new “very hot Jupiters” among the OGLE transiting candidates , 2004 .

[18]  Eric B. Ford,et al.  Improving the Efficiency of Markov Chain Monte Carlo for Analyzing the Orbits of Extrasolar Planets , 2005, astro-ph/0512634.

[19]  D. Queloz,et al.  A planet-sized transiting star around OGLE-TR-122. Accurate mass and radius near the hydrogen-burning limit , 2005, astro-ph/0501611.

[20]  D. Rubin,et al.  Inference from Iterative Simulation Using Multiple Sequences , 1992 .

[21]  R. Nichol,et al.  Cosmological parameters from SDSS and WMAP , 2003, astro-ph/0310723.

[22]  David Charbonneau,et al.  The transit light curve project. I. Four consecutive transits of the exoplanet XO-1b , 2006 .

[23]  I. Skillen,et al.  SuperWASP-N extrasolar planet candidates between 18 < RA < 21 h , 2007, 0705.2598.

[24]  M. Holman,et al.  The Transit Light Curve Project. III. Tres Transits of TrES-1 , 2006, astro-ph/0611404.

[25]  David Charbonneau,et al.  PRECISE RADIUS ESTIMATES FOR THE EXOPLANETS WASP-1b AND WASP-2b , 2007 .

[26]  Michel Mayor,et al.  ELODIE metallicity-biased search for transiting Hot Jupiters. II. A very hot Jupiter transiting the bright K star HD 189733 , 2005 .

[27]  J. E. Stys,et al.  A Transiting Planet of a Sun-like Star , 2006 .

[28]  S. Seager,et al.  A Unique Solution of Planet and Star Parameters from an Extrasolar Planet Transit Light Curve , 2002, astro-ph/0206228.

[29]  J. Munn,et al.  The USNO-B Catalog , 2002, astro-ph/0210694.

[30]  W. Press,et al.  Numerical Recipes in Fortran: The Art of Scientific Computing.@@@Numerical Recipes in C: The Art of Scientific Computing. , 1994 .

[31]  David Charbonneau,et al.  TrES-1: The Transiting Planet of a Bright K0 V Star , 2004 .

[32]  B. Enoch,et al.  The WASP Project and the SuperWASP Cameras , 2006, astro-ph/0608454.

[33]  D. Queloz,et al.  Doppler follow-up of OGLE planetary transit candidates in Carina , 2005 .

[34]  A. Collier Cameron,et al.  A fast hybrid algorithm for exoplanetary transit searches , 2006, astro-ph/0609418.

[35]  A. Collier Cameron,et al.  The SuperWASP wide-field exoplanetary transit survey: candidates from fields 23 h < RA < 03 h , 2006 .

[36]  Saurabh Jha,et al.  An extrasolar planet that transits the disk of its parent star , 2003, Nature.

[37]  David Charbonneau,et al.  TrES-2: The First Transiting Planet in the Kepler Field , 2006, astro-ph/0609335.

[38]  P. Sackett,et al.  A Photometric Diagnostic to Aid in the Identification of Transiting Extrasolar Planets , 2005, astro-ph/0503575.

[39]  A. Collier Cameron,et al.  SuperWASP-North extrasolar planet candidates: candidates from fields 17 h < RA < 18 h , 2007, 0705.2603.

[40]  Carnegie,et al.  HAT-P-1b: A Large-Radius, Low-Density Exoplanet Transiting One Member of a Stellar Binary* ** , 2007 .

[41]  A. Cox,et al.  Allen's astrophysical quantities , 2000 .

[42]  S. Mark Ammons,et al.  The N2K Consortium. IV. New Temperatures and Metallicities for More than 100,000 FGK Dwarfs , 2005, astro-ph/0510237.