An iterative filter to reconstruct planetary transit signals in the presence of stellar variability
arXiv:0905.3062 · doi:10.1111/j.1365-2966.2009.15052.x
Abstract
The detrending algorithms which are widely used to reduce the impact of stellar variability on space-based transit surveys are ill-suited for estimating the parameters of confirmed planets, as they unavoidably alter the transit signal. We present a post-detection detrending algorithm, which filters out signal on other timescales than the period of the transit while preserving the transit signal. We compare the performance of this new filter to a well-established pre-detection detrending algorithm, by applying both to a set of 20 simulated light curves containing planetary transits, stellar variability, and instrumental noise as expected for the CoRoT space mission, and performing analytic fits to the transits. Compared to the pre-detection benchmark, the new post-detection filter systematically yields significantly reduced errors (median reduction in relative error over our sample of about 40%) on the planet-to-star radius ratio, system scale and impact parameter. This is particularly important for active stars, where errors induced by variability can otherwise dominate the final error budget on the planet parameters. Aside from improving planet parameter estimates, the new filter preserves all signal at the orbital period of the planet, and thus could also be used to search for light reflected by the planet.
16 pages, 6 figures, accepted for publication in MNRAS
References in corpus (9)
- Mass-Radius Relationships for Solid Exoplanets
- Efficient identification of exoplanetary transit candidates from SuperWASP light curves
- HAT-P-1b: A Large-Radius, Low-Density Exoplanet Transiting one Member of a Stellar Binary
- Using Stellar Limb-Darkening to Refine the Properties of HD 209458b
- Ocean Planet or Thick Atmosphere: On the Mass-Radius Relationship for Solid Exoplanets with Massive Atmospheres
- Properties of analytic transit light curve models
- TrES-4: A Transiting Hot Jupiter of Very Low Density
- The Transit Light Curve Project. VII. The Not-So-Bloated Exoplanet HAT-P-1b
- Modelling solar-like variability for the detection of Earth-like planetary transits. I. Performance of the three-spot modelling and harmonic function fitting
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- Transiting exoplanets from the CoRoT space mission XXVII. CoRoT-28b, a planet orbiting an evolved star, and CoRoT-29b, a planet showing an asymmetric transit
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