A sensitivity analysis of the WFCAM Transit Survey for short-period giant planets around M dwarfs
arXiv:1304.1399 · doi:10.1093/mnras/stt571
Abstract
The WFCAM Transit Survey (WTS) is a near-infrared transit survey running on the United Kingdom Infrared Telescope (UKIRT), designed to discover planets around M dwarfs. The WTS acts as a poor-seeing backup programme for the telescope, and represents the first dedicated wide-field near-infrared transit survey. In this paper we describe the observing strategy of the WTS and the processing of the data to generate lightcurves. We describe the basic properties of our photometric data, and measure our sensitivity based on 950 observations. We show that the photometry reaches a precision of ~4mmag for the brightest unsaturated stars in lightcurves spanning almost 3 years. Optical (SDSS griz) and near-infrared (UKIRT ZYJHK) photometry is used to classify the target sample of 4600 M dwarfs with J magnitudes in the range 11-17. Most have spectral-types in the range M0-M2. We conduct Monte Carlo transit injection and detection simulations for short period (<10 day) Jupiter- and Neptune-sized planets to characterize the sensitivity of the survey. We investigate the recovery rate as a function of period and magnitude for 4 hypothetical star-planet cases: M0-2+Jupiter, M2-4+Jupiter, M0-2+Neptune, M2-4+Neptune. We find that the WTS lightcurves are very sensitive to the presence of Jupiter-sized short-period transiting planets around M dwarfs. Hot Neptunes produce a much weaker signal and suffer a correspondingly smaller recovery fraction. Neptunes can only be reliably recovered with the correct period around the rather small sample (~100) of the latest M dwarfs (M4-M9) in the WTS. The non-detection of a hot-Jupiter around an M dwarf by the WFCAM Transit Survey allows us to place an upper limit of 1.7-2.0 per cent (at 95 per cent confidence) on the planet occurrence rate.
20 pages, 13 figures; accepted for publication in MNRAS
References in corpus (15)
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- The Dartmouth Stellar Evolution Database
- The effect of red noise on planetary transit detection
- Planet formation around stars of various masses: The snow line and the frequency of giant planets
- Stellar SEDs from 0.3-2.5 Microns: Tracing the Stellar Locus and Searching for Color Outliers in SDSS and 2MASS
- The UKIRT Wide Field Camera ZYJHK Photometric System: Calibration from 2MASS
- Evolution of low-mass star and brown dwarf eclipsing binaries
- A New Planet Around an M Dwarf: Revealing a Correlation Between Exoplanets and Stellar Mass
- Rapid Formation of Gas Giant Planets around M Dwarf Stars
- Gas disks to gas giants: Simulating the birth of planetary systems
- Properties of analytic transit light curve models
- Near-Infrared Variability in the 2MASS Calibration Fields: A Search for Planetary Transit Candidates
- The Monitor project: Data processing and lightcurve production
- 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
- Investigating the potential of the Pan-Planets project using Monte Carlo simulations
Cited by in corpus (5)
- Occurrence rate of hot Jupiters around early-type M dwarfs based on TESS data
- TOI-5344 b: A Saturn-like planet orbiting a super-Solar metallicity M0 dwarf
- Identification of asteroids using the Virtual Observatory: the WFCAM Transit Survey
- Relative Occurrence Rate Between Hot and Cold Jupiters as an Indicator to Probe Planet Migration
- Following the TraCS of exoplanets with Pan-Planets: Wendelstein-1b and Wendelstein-2b