Precision Time-series Photometry in the Thermal Infrared with a 'Wall-Eyed' Pointing Mode at the Large Binocular Telescope
arXiv:1712.06753 · doi:10.1088/1538-3873/aa97cb
Abstract
Time-series photometry taken from ground-based facilities is improved with the use of comparison stars due to the short timescales of atmospheric-induced variability. However, the sky is bright in the thermal infrared (3-5 um), and the correspondingly small fields-of-view of available detectors make it highly unusual to have a calibration star in the same field as a science target. Here we present a new method of obtaining differential photometry by simultaneously imaging a science target and a calibrator star, separated by <2 amin, onto a 10x10 asec field-of-view detector. We do this by taking advantage of the LBT's unique binocular design to point the two co-mounted telescopes apart and simultaneously obtain both targets in three sets of observations. Results indicate that the achievable scatter in Ls-band (3.3 um) is at the percent level for bright targets, and possibly better with heavier sampling and characterization of the systematics.
References in corpus (21)
- The Gaia mission
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- Gaia Data Release 1: Astrometry - one billion positions, two million proper motions and parallaxes
- The effect of red noise on planetary transit detection
- Improved parameters for extrasolar transiting planets
- Detection of atmospheric haze on an extrasolar planet: The 0.55 - 1.05 micron transmission spectrum of HD189733b with the Hubble Space Telescope
- Sodium Absorption From the Exoplanetary Atmosphere of HD189733b Detected in the Optical Transmission Spectrum
- The Transit Light Curve Project. IX. Evidence for a Smaller Radius of the Exoplanet XO-3b
- Water Vapor in the Spectrum of the Extrasolar Planet HD 189733b: 1. the Transit
- The Broadband Infrared Emission Spectrum of the Exoplanet HD 189733b
- Strong Water Absorption in the Dayside Emission Spectrum of the Planet HD 189733b
- XO-2b: Transiting Hot Jupiter in a Metal-rich Common Proper Motion Binary
- Vertical Atmospheric Structure in a Variable Brown Dwarf: Pressure-dependent Phase Shifts in Simultaneous Hubble Space Telescope-Spitzer Light Curves
- The Transit Light Curve Project. VII. The Not-So-Bloated Exoplanet HAT-P-1b
- Water vapor in the spectrum of the extrasolar planet HD 189733b: 2. The eclipse
- Near-infrared Thermal Emission Detections of a number of hot Jupiters and the Systematics of Ground-based Near-infrared Photometry
- The LEECH Exoplanet Imaging Survey. Further constraints on the planet architecture of the HR 8799 system
- 3.8-Micron Photometry During the Secondary Eclipse of the Extrasolar Planet HD 209458b
- The ground-based H, K, and L-band absolute emission spectra of HD 209458b
- Calibration of the Relationship between Precipitable Water Vapor and 225 GHz Atmospheric Opacity via Optical Echelle Spectroscopy at Las Campanas Observatory
- Examining the Infrared Variable Star Population Discovered in the Small Magellanic Cloud Using the SAGE-SMC Survey