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High contrast imaging at the LBT: the LEECH exoplanet imaging survey
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High contrast imaging at the LBT: the LEECH exoplanet imaging survey
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In Spring 2013, the LEECH (LBTI Exozodi Exoplanet Common Hunt) survey began its $\sim$130-night campaign from the Large Binocular Telescope (LBT) atop Mt Graham, Arizona. This survey benefits from the many technological achievements of the LBT, including two 8.4-meter mirrors on a single fixed mount, dual adaptive secondary mirrors for high Strehl performance, and a cold beam combiner to dramatically reduce the telescope's overall background emissivity. LEECH neatly complements other high-contrast planet imaging efforts by observing stars at L' (3.8 $\mu$m), as opposed to the shorter wavelength near-infrared bands (1-2.4 $\mu$m) of other surveys. This portion of the spectrum offers deep mass sensitivity, especially around nearby adolescent ($\sim$0.1-1 Gyr) stars. LEECH's contrast is competitive with other extreme adaptive optics systems, while providing an alternative survey strategy. Additionally, LEECH is characterizing known exoplanetary systems with observations from 3-5$\mu$m in preparation for JWST.
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Cited by 1 Pith paper
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Chasing the storm: Investigating the application of high-contrast imaging techniques in producing precise exoplanet light curves
Artificial companions injected into LBT/ALES vAPP data are detectable, but their variability amplitudes, periods and phases are not accurately recovered when only ~2.4 periods are observed.
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