Searching for Transiting Planets in Stellar Systems
arXiv:astro-ph/0504162 · doi:10.1086/432532
Abstract
We analyze the properties of searches devoted to finding planetary transits by observing simple stellar systems, such as globular clusters, open clusters, and the Galactic bulge. We develop the analytic tools necessary to predict the number of planets that a survey will detect as a function of the parameters of the system, the observational setup, site properties, and planet properties. We find that the detection probability is generally maximized for I-band observations. The signal-to-noise ratio of a planetary transit is weakly dependent on the mass of the primary for sources with flux above the sky background, and falls very sharply for sources below sky. Therefore the number of detectable planets is roughly proportional to the number of stars with fluxes above sky (and not necessarily the number of sources with photometric error less a given threshold). In order to maximize the number of detections, experiments should be tailored such that stars near sky are above the detection threshold. Once this requirement is met, the number of detected planets is relatively weakly dependent on the detection threshold, diameter of the telescope, exposure time, seeing, age of the system, and planet radius. The number of detected planets is a strongly decreasing function of the distance to the system, implying that the nearest, richest clusters may prove to be optimal targets.
24 pages, 10 figures. Minor changes. Accepted to ApJ, to appear in the September 20, 2005 issue
References in corpus (28)
- Detection of Thermal Emission from an Extrasolar Planet
- Detection of oxygen and carbon in the hydrodynamically escaping atmosphere of the extrasolar planet HD209458b
- Infrared radiation from an extrasolar planet
- Wide-field millimagnitude photometry with HAT: A Tool for Extra-solar Planet Detection
- TrES-1: The Transiting Planet of a Bright K0V Star
- Two new "very hot Jupiters" among the OGLE transiting candidates
- A transiting extrasolar giant planet around the star OGLE-TR-113
- The "missing link": a 4-day period transiting exoplanet around OGLE-TR-111
- Doppler follow-up of OGLE transiting companions in the Galactic bulge
- Testing blend scenarios for extrasolar transiting planet candidates. I. -- OGLE-TR-33: a false positive
- On the Period Distribution of Close-In Extrasolar Giant Planets
- A transiting extrasolar giant planet around the star OGLE-TR-10
- An Absence of Hot Jupiter Planets in 47 Tucanae: Results of a Wide-Field Transit Search
- A planet-sized transiting star around OGLE-TR-122 - Accurate mass and radius near the Hydrogen-burning limit
- Practical Planet Prospecting
- Planets in Stellar Clusters Extensive Search. III. A search for transiting planets in the metal-rich open cluster NGC 6791
- A Survey for Planetary Transits in the Field of NGC 7789
- The Challenge of Wide-Field Transit Surveys: The Case of GSC 01944-02289
- On the Size Distribution of Close-In Extrasolar Giant Planets
- A Search for Planets in the Old Open Cluster NGC 6791
- Searching for Planetary Transits in Galactic Open Clusters: EXPLORE/OC
- The UNSW Extrasolar Planet Search: Methods and First Results from a Field Centred on NGC 6633
- Results from the Wide Angle Search for Planets Prototype (WASP0) I: Analysis of the Pegasus Field
- A Method for the Detection of Planetary Transits in Large Time-Series Datasets
- The Optical Gravitational Lensing Experiment. Planetary and Low-Luminosity Object Transits in the Fields of Galactic Disk. Results of the 2003 OGLE Observing Campaigns
- An All-Sky Survey for the Detection of Transiting Extrasolar Planets and for Permanent Variable Star Tracking
- Characterisation of extrasolar planetary transit candidates
- KELT: The Kilodegree Extremely Little Telescope
Cited by in corpus (27)
- Design Considerations for a Ground-based Transit Search for Habitable Planets Orbiting M dwarfs
- Tidal Evolution of Close-in Extra-Solar Planets
- Transit Detection in the MEarth Survey of Nearby M Dwarfs: Bridging the Clean-First, Search-Later Divide
- Deep MMT Transit Survey of the Open Cluster M37 II: Variable Stars
- Survey for Transiting Extrasolar Planets in Stellar Systems: III. A Limit on the Fraction of Stars with Planets in the Open Cluster NGC 1245
- The Monitor project: Searching for occultations in young open clusters
- Predicting the Yields of Photometric Surveys for Transiting Extrasolar Planets
- Deep MMT Transit Survey of the Open Cluster M37 I: Observations and Cluster Parameters
- Ensemble analysis of open cluster transit surveys: upper limits on the frequency of short-period planets consistent with the field
- The Frequency of Large Radius Hot and Very Hot Jupiters in omega Centauri
- KELT-11b: A Highly Inflated Sub-Saturn Exoplanet Transiting the V=8 Subgiant HD 93396
- Deep MMT Transit Survey of the Open Cluster M37 IV: Limit on the Fraction of Stars With Planets as Small as 0.3 R_J
- A Low-Mass Exoplanet Candidate Detected By Transiting the Praesepe M Dwarf JS 183
- Interpreting and predicting the yield of transit surveys: Giant planets in the OGLE fields
- Too Little, Too Late: How the Tidal Evolution of Hot Jupiters affects Transit Surveys of Clusters
- Pushing the Limits of Ground-Based Photometric Precision -- Sub-Millimagnitude Time-Series Photometry of the Open Cluster NGC 6791
- Observational Window Functions in Planet Transit Surveys
- Toroidal Atmospheres around Extrasolar Planets
- An Observational Test for the Anthropic Origin of the Cosmological Constant
- KELT-12b: A Day, Highly Inflated Hot Jupiter Transiting a Mildly Evolved Hot Star
- On the potential of transit surveys in star clusters: Impact of correlated noise and radial velocity follow-up
- Red noise versus planetary interpretations in the microlensing event OGLE-2013-BLG-446
- Millimagnitude Optical Photometry for the Transiting Planetary Candidate OGLE-TR-109
- A Hot Saturn Near (but unassociated with) the Open Cluster NGC 1817
- Observational Window Functions in Planet Transit Searches
- On the Habitability of Our Universe
- Predicting the Yields of Photometric Surveys for Transiting Planets