arXiv · 1210.5136
The Quasiperiodic Automated Transit Search Algorithm
Abstract
We present a new algorithm for detecting transiting extrasolar planets in time-series photometry. The Quasiperiodic Automated Transit Search (QATS) algorithm relaxes the usual assumption of strictly periodic transits by permitting a variable, but bounded, interval between successive transits. We show that this method is capable of detecting transiting planets with significant transit timing variations (TTVs) without any loss of significance -- "smearing" -- as would be incurred with traditional algorithms; however, this is at the cost of an slightly-increased stochastic background. The approximate times of transit are standard products of the QATS search. Despite the increased flexibility, we show that QATS has a run-time complexity that is comparable to traditional search codes and is comparably easy to implement. QATS is applicable to data having a nearly uninterrupted, uniform cadence and is therefore well-suited to the modern class of space-based transit searches (e.g., Kepler, CoRoT). Applications of QATS include transiting planets in dynamically active multi-planet systems and transiting planets in stellar binary systems.
Explore related subjects
Keep this discovery
Joshua A. Carter, Eric Agol. 2012-10-18. The Quasiperiodic Automated Transit Search Algorithm. https://doi.org/10.1088/0004-637x/765/2/132
Cite the original work for its findings. Save a collection to share your selection of sources.