A Metric and Optimisation Scheme for Microlens Planet Searches
arXiv:0901.0846 · doi:10.1111/j.1365-2966.2009.14470.x
Abstract
OGLE III and MOA II are discovering 600-1000 Galactic Bulge microlens events each year. This stretches the resources available for intensive follow-up monitoring of the lightcurves in search of anomalies caused by planets near the lens stars. We advocate optimizing microlens planet searches by using an automatic prioritization algorithm based on the planet detection zone area probed by each new data point. This optimization scheme takes account of the telescope and detector characteristics, observing overheads, sky conditions, and the time available for observing on each night. The predicted brightness and magnification of each microlens target is estimated by fitting to available data points. The optimisation scheme then yields a decision on which targets to observe and which to skip, and a recommended exposure time for each target, designed to maximize the planet detection capability of the observations. The optimal strategy maximizes detection of planet anomalies, and must be coupled with rapid data reduction to trigger continuous follow-up of anomalies that are thereby found. A web interface makes the scheme available for use by human or robotic observers at any telescope. We also outline a possible self-organising scheme that may be suitable for coordination of microlens observations by a heterogeneous telescope network.
17 pages, 15 figures, MNRAS in press (6 Jan 2009)
References in corpus (7)
- Discovery of a Jupiter/Saturn Analog with Gravitational Microlensing
- Microlens OGLE-2005-BLG-169 Implies Cool Neptune-Like Planets are Common
- A Low-Mass Planet with a Possible Sub-Stellar-Mass Host in Microlensing Event MOA-2007-BLG-192
- OGLE-2005-BLG-071Lb, the Most Massive M-Dwarf Planetary Companion?
- RoboNet-II: Follow-up observations of microlensing events with a robotic network of telescopes
- An anomaly detector with immediate feedback to hunt for planets of Earth mass and below by microlensing
- The web-PLOP observation prioritisation system
Cited by in corpus (15)
- Frequency of Solar-Like Systems and of Ice and Gas Giants Beyond the Snow Line from High-Magnification Microlensing Events in 2005-2008
- Spitzer Parallax of OGLE-2015-BLG-0966: A Cold Neptune in the Galactic Disk
- Microlensing Searches for Exoplanets
- MOA-2010-BLG-328Lb: a sub-Neptune orbiting very late M dwarf ?
- A Super-Jupiter orbiting a late-type star: A refined analysis of microlensing event OGLE-2012-BLG-0406
- OGLE-2008-BLG-510: first automated real-time detection of a weak microlensing anomaly - brown dwarf or stellar binary?
- Extending the Planetary Mass Function to Earth Mass by Microlensing at Moderately High Magnification
- The OGLE-III planet detection efficiency from six years of microlensing observations (2003 to 2008)
- ROME/REA: A gravitational microlensing search for exo-planets beyond the snow-line on a global network of robotic telescopes
- RoboTAP - target priorities for robotic microlensing observations
- OGLE-2014-BLG-1186: gravitational microlensing providing evidence for a planet orbiting the foreground star or for a close binary source?
- Bayesian analysis of caustic-crossing microlensing events
- The web-PLOP observation prioritisation system
- Simulator for Microlens Planet Surveys
- Models of the night-sky brightness and the efficiency of searching for exoplanets with the microlensing method