High contrast imaging with Fizeau interferometry: The case of Altair
arXiv:2201.05897 · doi:10.3847/1538-3881/ac3b5b
Abstract
The Large Binocular Telescope (LBT) has two 8.4-m primary mirrors that produce beams that can be combined coherently in a "Fizeau" interferometric mode. In principle, the Fizeau PSF enables the probing of structure at a resolution up to three times better than that of the adaptive-optics-corrected PSF of a single 8.4-m telescope. In this work, we examined the nearby star Altair (5.13 pc, type A7V, 100s Myr to 1.4 Gyr) in the Fizeau mode with the LBT at Br- (4.05 m) and carried out angular differential imaging to search for companions. This work presents the first filled-aperture LBT Fizeau science dataset to benefit from a correcting mirror which provides active phase control. In the analysis of the angular regime, the sensitivity of the dataset is down to 0.5 at 1" for a 1.0 Gyr system. This sensitivity remains limited by the small amount of integration time, which is in turn limited by the instability of the Fizeau PSF. However, in the Fizeau fringe regime we attain sensitivities of at 0.2" and put constraints to companions of 1.3 down to an inner angle of 0.15", closer than any previously published direct imaging of Altair. This analysis is a pathfinder for future datasets of this type, and represents some of the first steps to unlocking the potential of the first ELT. Fizeau observations will be able to reach dimmer targets with upgrades to the instrument, in particular the phase detector.
Published in AJ
References in corpus (23)
- The NumPy array: a structure for efficient numerical computation
- VOSA: Virtual Observatory SED Analyzer. An application to the Collinder 69 open cluster
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- Fundamental limitations of high contrast imaging set by small sample statistics
- Imaging the Surface of Altair
- Interferometric Observations of Rapidly Rotating Stars
- Fundamental Parameters of 87 Stars from the Navy Precision Optical Interferometer
- The SPHERE infrared survey for exoplanets (SHINE). III. The demographics of young giant exoplanets below 300 au with SPHERE
- The 10 parsec sample in the Gaia era
- Characterizing 51 Eri b from 1-5 m: a partly-cloudy exoplanet
- Near-infrared emission from sublimating dust in collisionally active debris disks
- Altair - the 'hottest' magnetically active star in X-rays
- A realistic two-dimensional model of Altair
- A New Standard for Assessing the Performance of High Contrast Imaging Systems
- Co-phasing the Large Binocular Telescope: status and performance of LBTI/PHASECam
- Exoplanets with ELT-METIS I: Estimating the direct imaging exoplanet yield around stars within 6.5 parsecs
- The Lyot Project Direct Imaging Survey of Substellar Companions: Statistical Analysis and Information from Nondetections
- Constraints on the structure of hot exozodiacal dust belts
- Large Binocular Telescope Interferometer Adaptive Optics: On-sky performance and lessons learned
- RefPlanets: Search for reflected light from extra-solar planets with SPHERE/ZIMPOL
- Direct imaging of exoplanets in the habitable zone with adaptive optics
- Resolving Io's Volcanoes from a Mutual Event Observation at the Large Binocular Telescope
- Forecasts of the atmospherical parameters close to the ground at the LBT site in the context of the ALTA project